{"id":423,"date":"2026-06-19T10:57:22","date_gmt":"2026-06-19T10:57:22","guid":{"rendered":"https:\/\/peptidesdivas.com\/?post_type=product&#038;p=423"},"modified":"2026-07-20T08:29:14","modified_gmt":"2026-07-20T08:29:14","slug":"mots-c-mitochondrial-research-peptide-peptides-divas","status":"publish","type":"product","link":"https:\/\/peptidesdivas.com\/cs\/product\/mots-c-mitochondrial-research-peptide-peptides-divas\/","title":{"rendered":"MOTS-c"},"content":{"rendered":"<h1>MOTS-c \u2013 Mitochondrial-Derived Research Peptide<\/h1>\n<p>MOTS-c is an advanced mitochondrial-derived peptide composed of 16 amino acids. Its sequence is encoded by a short open reading frame within the mitochondrial 12S ribosomal RNA region, making MOTS-c a distinctive research compound at the intersection of mitochondrial genetics, cellular signalling and metabolic regulation.<\/p>\n<p>Unlike most peptides, which are encoded by genes located in the nuclear genome, MOTS-c originates from mitochondrial DNA. This unusual biological origin makes it particularly relevant for professional laboratory research involving mitochondria-to-nucleus communication, cellular energy sensing, AMPK-related pathways, skeletal-muscle metabolism and adaptive responses to metabolic stress.<\/p>\n<p>MOTS-c is supplied as a premium lyophilised research material in a securely sealed vial with clear batch-specific information, professional packaging and fast delivery from Peptides Divas.<\/p>\n<h2>Kl\u00ed\u010dov\u00e9 vlastnosti produktu<\/h2>\n<ul>\n<li>Mitochondrial-derived research peptide<\/li>\n<li>Clearly defined 16-amino-acid structure<\/li>\n<li>Encoded within the mitochondrial 12S-rRNA region<\/li>\n<li>Relevant for AMPK-related signalling research<\/li>\n<li>Suitable for mitochondrial bioenergetics studies<\/li>\n<li>Useful for cellular energy and metabolic research<\/li>\n<li>Relevant for skeletal-muscle cell models<\/li>\n<li>Suitable for stress-response and nuclear-signalling studies<\/li>\n<li>Dod\u00e1v\u00e1 se jako lyofilizovan\u00fd v\u00fdzkumn\u00fd materi\u00e1l<\/li>\n<li>Jasn\u00e9 informace o produktu specifick\u00e9 pro danou \u0161ar\u017ei<\/li>\n<li>Bezpe\u010dn\u00e9 a diskr\u00e9tn\u00ed balen\u00ed<\/li>\n<li>Rychl\u00e9 a sledovateln\u00e9 doru\u010den\u00ed do Evropy<\/li>\n<\/ul>\n<h2>What Is MOTS-c?<\/h2>\n<p>MOTS-c stands for Mitochondrial Open Reading Frame of the 12S rRNA Type-c.<\/p>\n<p>It is part of a growing group of mitochondrial-derived peptides produced from short open reading frames found within mitochondrial genetic material. These peptides are studied as signalling molecules that may help mitochondria communicate with other parts of the cell.<\/p>\n<p>MOTS-c consists of 16 amino acids and has been examined in laboratory and preclinical models involving cellular metabolism, energy sensing, mitochondrial function and adaptive stress responses.<\/p>\n<p>Its mitochondrial origin gives MOTS-c a distinctive research profile compared with conventional peptides encoded by nuclear DNA.<\/p>\n<h2>Mitochondrial-Derived Peptide Research<\/h2>\n<p>Mitochondria are best known for their role in cellular energy production, but they also participate in signalling, stress adaptation and communication with the nucleus.<\/p>\n<p>Mitochondrial-derived peptides are studied as potential molecular messengers within these processes.<\/p>\n<p>MOTS-c may be relevant for research involving:<\/p>\n<ul>\n<li>Mitochondrial genetic signalling<\/li>\n<li>Mitochondria-to-nucleus communication<\/li>\n<li>Cellular energy sensing<\/li>\n<li>Metabolic adaptation<\/li>\n<li>Mitochondrial stress responses<\/li>\n<li>Nuclear gene-expression regulation<\/li>\n<li>Cellular homeostasis<\/li>\n<li>Retrograde signalling<\/li>\n<li>Mitochondrial peptide biology<\/li>\n<li>Comparative mitochondrial-derived peptide analysis<\/li>\n<\/ul>\n<h2>AMPK-Related Research<\/h2>\n<p>AMP-activated protein kinase, commonly known as AMPK, is an important cellular energy sensor.<\/p>\n<p>AMPK activity is studied in relation to how cells detect and respond to changes in available energy. When cellular energy conditions change, AMPK-associated pathways can influence glucose utilisation, fatty-acid metabolism and other energy-producing processes.<\/p>\n<p>MOTS-c has been investigated in relation to AMPK activation and may be relevant for research involving:<\/p>\n<ul>\n<li>Cellular energy sensing<\/li>\n<li>AMPK signalling<\/li>\n<li>AMP-to-ATP balance<\/li>\n<li>Metabolic stress responses<\/li>\n<li>Glucose-uptake pathways<\/li>\n<li>Vyu\u017eit\u00ed mastn\u00fdch kyselin<\/li>\n<li>Cellular substrate selection<\/li>\n<li>Energy-homeostasis mechanisms<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Comparative AMPK-pathway research<\/li>\n<\/ul>\n<p>These research areas describe experimental mechanisms and do not represent established therapeutic outcomes.<\/p>\n<h2>Folate and Purine Pathway Research<\/h2>\n<p>Early mechanistic studies examined the relationship between MOTS-c, the folate cycle and de novo purine biosynthesis.<\/p>\n<p>These pathways are closely connected with nucleotide production, cellular growth and energy-status sensing.<\/p>\n<p>Potential laboratory applications include:<\/p>\n<ul>\n<li>Folate-cycle metabolism<\/li>\n<li>De novo purine biosynthesis<\/li>\n<li>AICAR-related pathway research<\/li>\n<li>Nucleotide metabolism<\/li>\n<li>Metabolic-intermediate analysis<\/li>\n<li>AMPK-associated metabolic responses<\/li>\n<li>Cellular metabolomics<\/li>\n<li>Pathway-inhibition studies<\/li>\n<li>Comparative metabolic profiling<\/li>\n<li>Biochemical pathway mapping<\/li>\n<\/ul>\n<p>The relationship between folate metabolism, purine synthesis and AMPK activation makes MOTS-c useful for laboratories studying interconnected cellular metabolic networks.<\/p>\n<h2>Mitochondrial Bioenergetics Research<\/h2>\n<p>Mitochondrial bioenergetics refers to the processes through which mitochondria convert nutrients into usable cellular energy.<\/p>\n<p>MOTS-c may be relevant for studies involving:<\/p>\n<ul>\n<li>Mitochondrial respiration<\/li>\n<li>Oxidative phosphorylation<\/li>\n<li>Oxygen-consumption analysis<\/li>\n<li>Mitochondrial efficiency<\/li>\n<li>Cellular ATP-related pathways<\/li>\n<li>Electron-transport activity<\/li>\n<li>Reaktivn\u00ed formy kysl\u00edku<\/li>\n<li>Redox handling<\/li>\n<li>Mitochondrial integrity<\/li>\n<li>Metabolic substrate utilisation<\/li>\n<li>PGC-1\u03b1-related pathways<\/li>\n<li>AMPK-dependent mitochondrial responses<\/li>\n<\/ul>\n<p>Recent preclinical research has continued to investigate how MOTS-c interacts with AMPK and PGC-1\u03b1-dependent pathways involved in muscle mitochondrial function.<\/p>\n<h2>Skeletal-Muscle Research<\/h2>\n<p>Skeletal muscle is a major site of cellular energy use and metabolic adaptation.<\/p>\n<p>MOTS-c has been examined in skeletal-muscle cells and animal models involving:<\/p>\n<ul>\n<li>Muscle-cell metabolism<\/li>\n<li>Myoblast adaptation<\/li>\n<li>Mitochondrial activity in muscle<\/li>\n<li>Glucose-utilisation pathways<\/li>\n<li>Metabolismus aminokyselin<\/li>\n<li>Glycolytic pathways<\/li>\n<li>Oxidative muscle characteristics<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Cellular responses to energetic demand<\/li>\n<li>Exercise-associated molecular signalling<\/li>\n<li>Age-related muscle metabolism<\/li>\n<li>Comparative muscle-cell assays<\/li>\n<\/ul>\n<p>These studies make MOTS-c particularly relevant for researchers investigating how mitochondrial signals influence muscle-cell energy systems.<\/p>\n<h2>Metabolic Stress Research<\/h2>\n<p>Cells are continually exposed to changing conditions involving nutrient availability, oxidative stress, temperature and energy demand.<\/p>\n<p>MOTS-c has been studied as part of adaptive cellular responses to metabolic stress.<\/p>\n<p>Potential research areas include:<\/p>\n<ul>\n<li>Nutrient-deprivation models<\/li>\n<li>Glucose-restriction research<\/li>\n<li>Oxidative-stress pathways<\/li>\n<li>Heat-stress responses<\/li>\n<li>Cellular proteostasis<\/li>\n<li>Stress-responsive gene expression<\/li>\n<li>Mitochondrial adaptation<\/li>\n<li>Cellular survival signalling<\/li>\n<li>Homeostatic regulation<\/li>\n<li>HSF1-related pathways<\/li>\n<li>Stress-induced nuclear translocation<\/li>\n<\/ul>\n<p>Laboratory findings suggest that MOTS-c may relocate to the nucleus under certain metabolic-stress conditions, where it can participate in the regulation of stress-responsive gene expression.<\/p>\n<h2>Mitochondria-to-Nucleus Communication<\/h2>\n<p>Mitochondria and the nucleus continuously exchange information to coordinate metabolism and cellular adaptation.<\/p>\n<p>MOTS-c is studied as a potential mitochondrial signal involved in retrograde communication from mitochondria to the nucleus.<\/p>\n<p>Relevant research applications include:<\/p>\n<ul>\n<li>Nuclear translocation<\/li>\n<li>Mitochondrial retrograde signalling<\/li>\n<li>Adaptive gene expression<\/li>\n<li>Stress-responsive transcription<\/li>\n<li>Nuclear\u2013mitochondrial coordination<\/li>\n<li>Metabolic gene regulation<\/li>\n<li>Cellular homeostasis<\/li>\n<li>Transcription-factor interactions<\/li>\n<li>Chromatin-associated signalling<\/li>\n<li>Comparative gene-expression analysis<\/li>\n<\/ul>\n<p>This research area helps expand the traditional view of mitochondria from energy-producing organelles to active participants in cellular communication.<\/p>\n<h2>Exercise-Associated Research<\/h2>\n<p>Endogenous MOTS-c has been studied in relation to exercise and skeletal-muscle activity.<\/p>\n<p>Human observational research has examined changes in naturally produced MOTS-c in skeletal muscle and circulation following exercise. Experimental administration studies have largely been performed in mice and cellular models.<\/p>\n<p>Potential research topics include:<\/p>\n<ul>\n<li>Exercise-induced peptide expression<\/li>\n<li>Skeletal-muscle adaptation<\/li>\n<li>Metabolic demand signalling<\/li>\n<li>Physical-stress responses<\/li>\n<li>Muscle mitochondrial function<\/li>\n<li>Vyu\u017eit\u00ed energetick\u00e9ho substr\u00e1tu<\/li>\n<li>Exercise-responsive gene expression<\/li>\n<li>Age-related metabolic adaptation<\/li>\n<li>Cellular endurance pathways<\/li>\n<li>Comparative exercise models<\/li>\n<\/ul>\n<p>MOTS-c should not be presented as a replacement for exercise or as a proven performance-enhancing product.<\/p>\n<h2>Age-Related Research Models<\/h2>\n<p>Mitochondrial function and metabolic flexibility can change with age.<\/p>\n<p>MOTS-c has been investigated in preclinical aging models involving:<\/p>\n<ul>\n<li>Age-related mitochondrial changes<\/li>\n<li>Skeletal-muscle metabolism<\/li>\n<li>Cellular energy regulation<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Stress adaptation<\/li>\n<li>Proteostasis<\/li>\n<li>Physical-capacity models<\/li>\n<li>Mitochondrial gene signalling<\/li>\n<li>Redox balance<\/li>\n<li>Comparative young and aged cell models<\/li>\n<\/ul>\n<p>Results from animal studies should not automatically be interpreted as evidence of anti-aging effects in humans.<\/p>\n<h2>Potenci\u00e1ln\u00ed v\u00fdzkumn\u00e9 aplikace<\/h2>\n<p>MOTS-c may be suitable for controlled scientific studies involving:<\/p>\n<ul>\n<li>Mitochondrial-derived peptide biology<\/li>\n<li>Mitochondrial genome signalling<\/li>\n<li>AMPK-associated pathways<\/li>\n<li>Bun\u011b\u010dn\u00fd energetick\u00fd metabolismus<\/li>\n<li>Mitochondrial respiration<\/li>\n<li>Oxidative phosphorylation<\/li>\n<li>Skeletal-muscle metabolism<\/li>\n<li>Metabolic-stress responses<\/li>\n<li>Folate-cycle research<\/li>\n<li>Purine biosynthesis<\/li>\n<li>Nuclear translocation<\/li>\n<li>Adaptive gene expression<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Exercise-associated signalling<\/li>\n<li>Aging-related cellular models<\/li>\n<li>Redox and oxidative-stress research<\/li>\n<li>Analytick\u00e1 charakterizace peptid\u016f<\/li>\n<li>Testov\u00e1n\u00ed stability a degradace<\/li>\n<\/ul>\n<p>The exact experimental concentrations, controls, solvents and analytical procedures should be determined by the qualified laboratory conducting the research.<\/p>\n<h2>MOTS-c Versus Conventional Peptides<\/h2>\n<p>MOTS-c differs from many commonly studied peptides because its natural sequence is encoded within mitochondrial rather than nuclear genetic material.<\/p>\n<table>\n<thead>\n<tr>\n<th>Charakteristick\u00fd<\/th>\n<th>MOTS-c<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>Peptide category<\/td>\n<td>Mitochondrial-derived peptide<\/td>\n<\/tr>\n<tr>\n<td>D\u00e9lka peptidu<\/td>\n<td>16 aminokyselin<\/td>\n<\/tr>\n<tr>\n<td>Genetic origin<\/td>\n<td>Mitochondrial 12S-rRNA region<\/td>\n<\/tr>\n<tr>\n<td>Prim\u00e1rn\u00ed oblasti v\u00fdzkumu<\/td>\n<td>Energy metabolism and mitochondrial signalling<\/td>\n<\/tr>\n<tr>\n<td>Related pathway<\/td>\n<td>AMPK-associated cellular energy sensing<\/td>\n<\/tr>\n<tr>\n<td>Research format<\/td>\n<td>Synthetic lyophilised peptide<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>This unusual origin makes MOTS-c particularly valuable for research into mitochondrial genetics and inter-organelle communication.<\/p>\n<h2>Specifikace produktu<\/h2>\n<table>\n<thead>\n<tr>\n<th>Charakteristika produktu<\/th>\n<th>Informace<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>N\u00e1zev produktu<\/td>\n<td>MOTS-c<\/td>\n<\/tr>\n<tr>\n<td>Cel\u00e9 jm\u00e9no<\/td>\n<td>Mitochondrial Open Reading Frame of the 12S rRNA Type-c<\/td>\n<\/tr>\n<tr>\n<td>Kategorie produktu<\/td>\n<td>Mitochondrial-derived research peptide<\/td>\n<\/tr>\n<tr>\n<td>D\u00e9lka peptidu<\/td>\n<td>16 aminokyselin<\/td>\n<\/tr>\n<tr>\n<td>Genetic origin<\/td>\n<td>Mitochondrial 12S-rRNA region<\/td>\n<\/tr>\n<tr>\n<td>Primary research focus<\/td>\n<td>Mitochondrial and metabolic signalling<\/td>\n<\/tr>\n<tr>\n<td>Related pathway<\/td>\n<td>AMPK-associated energy sensing<\/td>\n<\/tr>\n<tr>\n<td>Formul\u00e1\u0159<\/td>\n<td>Lyofilizovan\u00fd v\u00fdzkumn\u00fd materi\u00e1l<\/td>\n<\/tr>\n<tr>\n<td>Prezentace<\/td>\n<td>Bezpe\u010dn\u011b uzav\u0159en\u00e1 v\u00fdzkumn\u00e1 lahvi\u010dka<\/td>\n<\/tr>\n<tr>\n<td>Dokumentace<\/td>\n<td>Analytick\u00e9 informace specifick\u00e9 pro danou \u0161ar\u017ei<\/td>\n<\/tr>\n<tr>\n<td>Obal<\/td>\n<td>Bezpe\u010dn\u00e9 a diskr\u00e9tn\u00ed balen\u00ed<\/td>\n<\/tr>\n<tr>\n<td>Zam\u00fd\u0161len\u00e9 pou\u017eit\u00ed<\/td>\n<td>V\u011bdeck\u00fd, analytick\u00fd a laboratorn\u00ed v\u00fdzkum<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<h2>Lyofilizovan\u00fd v\u00fdzkumn\u00fd form\u00e1t<\/h2>\n<p>MOTS-c is supplied as a lyophilised research material in a securely sealed vial.<\/p>\n<p>Lyophilisation removes moisture and helps support peptide stability during controlled storage and transport. Minor differences in appearance may occur because of production conditions, quantity and residual moisture.<\/p>\n<p>Product identity, purity and analytical quality should be confirmed through the documentation associated with the applicable batch rather than physical appearance alone.<\/p>\n<h2>Kvalita a transparentnost produkt\u016f<\/h2>\n<p>Peptides Divas focuses on clear product information, professional handling and batch-level traceability.<\/p>\n<p>Available analytical documentation may include:<\/p>\n<ul>\n<li>Identifikace produktu<\/li>\n<li>Aminokyselinov\u00e1 sekvence<\/li>\n<li>\u010c\u00edslo \u0161ar\u017ee nebo \u0161ar\u017ee<\/li>\n<li>Uv\u00e1d\u011bn\u00e1 \u010distota<\/li>\n<li>HPLC anal\u00fdza<\/li>\n<li>Data hmotnostn\u00ed spektrometrie<\/li>\n<li>Informace o testov\u00e1n\u00ed<\/li>\n<li>Vzhled produktu<\/li>\n<li>Doporu\u010den\u00ed pro skladov\u00e1n\u00ed<\/li>\n<\/ul>\n<p>This provides researchers with clear and traceable product information for the applicable batch.<\/p>\n<h2>Informace o \u00falo\u017ei\u0161ti<\/h2>\n<p>Store MOTS-c in its original sealed packaging under the conditions stated on the product label and applicable batch documentation.<\/p>\n<p>Protect the research material from:<\/p>\n<ul>\n<li>P\u0159\u00edm\u00e9 slune\u010dn\u00ed sv\u011btlo<\/li>\n<li>Nadm\u011brn\u00e9 teplo<\/li>\n<li>Vlhkost<\/li>\n<li>Kontaminace<\/li>\n<li>Po\u0161kozen\u00fd obal<\/li>\n<li>Opakovan\u00e9 teplotn\u00ed v\u00fdkyvy<\/li>\n<li>Zbyte\u010dn\u00e9 vystaven\u00ed vzduchu<\/li>\n<\/ul>\n<p>P\u0159ij\u00edmaj\u00edc\u00ed laborato\u0159 je zodpov\u011bdn\u00e1 za stanoven\u00ed vhodn\u00fdch postup\u016f p\u0159\u00edpravy, manipulace a skladov\u00e1n\u00ed pro sv\u016fj specifick\u00fd v\u00fdzkumn\u00fd protokol.<\/p>\n<h2>Why Choose MOTS-c?<\/h2>\n<p>MOTS-c offers a distinctive research profile for laboratories studying mitochondrial communication, cellular energy sensing and metabolic adaptation.<\/p>\n<p>Key research advantages include:<\/p>\n<ul>\n<li>Unique mitochondrial genetic origin<\/li>\n<li>Clearly defined 16-amino-acid structure<\/li>\n<li>Relevant for AMPK-pathway research<\/li>\n<li>Suitable for mitochondrial bioenergetics studies<\/li>\n<li>Useful for skeletal-muscle cell models<\/li>\n<li>Relevant for metabolic-stress research<\/li>\n<li>Valuable for mitochondria-to-nucleus signalling studies<\/li>\n<li>Convenient lyophilised research format<\/li>\n<li>Jasn\u00e9 informace o produktu specifick\u00e9 pro danou \u0161ar\u017ei<\/li>\n<\/ul>\n<h2>Pro\u010d objedn\u00e1vat od Peptides Divas?<\/h2>\n<p>Peptides Divas combines carefully selected research materials with fast, reliable and professional service.<\/p>\n<p>Customers benefit from:<\/p>\n<ul>\n<li>Jasn\u011b zobrazen\u00e9 specifikace produktu<\/li>\n<li>Analytick\u00e9 informace specifick\u00e9 pro danou \u0161ar\u017ei<\/li>\n<li>Rychl\u00e9 zpracov\u00e1n\u00ed objedn\u00e1vky<\/li>\n<li>Bezpe\u010dn\u00e9 a diskr\u00e9tn\u00ed balen\u00ed<\/li>\n<li>Mo\u017enosti sledovateln\u00e9 dopravy<\/li>\n<li>Pe\u010dliv\u00e1 ochrana lahvi\u010dky<\/li>\n<li>Responzivn\u00ed z\u00e1kaznick\u00e1 podpora<\/li>\n<li>Spolehliv\u00e9 evropsk\u00e9 doru\u010den\u00ed<\/li>\n<\/ul>\n<p>Choose MOTS-c from Peptides Divas for advanced laboratory research involving mitochondrial signalling, cellular energy metabolism, AMPK pathways and adaptive stress responses.<\/p>\n<p>Pouze pro laboratorn\u00ed v\u00fdzkumn\u00e9 pou\u017eit\u00ed. Nen\u00ed ur\u010deno pro hum\u00e1nn\u00ed ani veterin\u00e1rn\u00ed pou\u017eit\u00ed.<\/p>","protected":false},"excerpt":{"rendered":"<h1>MOTS-c \u2013 Mitochondrial-Derived Research Peptide<\/h1>\n<p>MOTS-c is an advanced mitochondrial-derived peptide composed of 16 amino acids. Its sequence is encoded by a short open reading frame within the mitochondrial 12S ribosomal RNA region, making MOTS-c a distinctive research compound at the intersection of mitochondrial genetics, cellular signalling and metabolic regulation.<\/p>\n<p>Unlike most peptides, which are encoded by genes located in the nuclear genome, MOTS-c originates from mitochondrial DNA. This unusual biological origin makes it particularly relevant for professional laboratory research involving mitochondria-to-nucleus communication, cellular energy sensing, AMPK-related pathways, skeletal-muscle metabolism and adaptive responses to metabolic stress.<\/p>\n<p>MOTS-c is supplied as a premium lyophilised research material in a securely sealed vial with clear batch-specific information, professional packaging and fast delivery from Peptides Divas.<\/p>\n<h2>Kl\u00ed\u010dov\u00e9 vlastnosti produktu<\/h2>\n<ul>\n<li>Mitochondrial-derived research peptide<\/li>\n<li>Clearly defined 16-amino-acid structure<\/li>\n<li>Encoded within the mitochondrial 12S-rRNA region<\/li>\n<li>Relevant for AMPK-related signalling research<\/li>\n<li>Suitable for mitochondrial bioenergetics studies<\/li>\n<li>Useful for cellular energy and metabolic research<\/li>\n<li>Relevant for skeletal-muscle cell models<\/li>\n<li>Suitable for stress-response and nuclear-signalling studies<\/li>\n<li>Dod\u00e1v\u00e1 se jako lyofilizovan\u00fd v\u00fdzkumn\u00fd materi\u00e1l<\/li>\n<li>Jasn\u00e9 informace o produktu specifick\u00e9 pro danou \u0161ar\u017ei<\/li>\n<li>Bezpe\u010dn\u00e9 a diskr\u00e9tn\u00ed balen\u00ed<\/li>\n<li>Rychl\u00e9 a sledovateln\u00e9 doru\u010den\u00ed do Evropy<\/li>\n<\/ul>\n<h2>What Is MOTS-c?<\/h2>\n<p>MOTS-c stands for Mitochondrial Open Reading Frame of the 12S rRNA Type-c.<\/p>\n<p>It is part of a growing group of mitochondrial-derived peptides produced from short open reading frames found within mitochondrial genetic material. These peptides are studied as signalling molecules that may help mitochondria communicate with other parts of the cell.<\/p>\n<p>MOTS-c consists of 16 amino acids and has been examined in laboratory and preclinical models involving cellular metabolism, energy sensing, mitochondrial function and adaptive stress responses.<\/p>\n<p>Its mitochondrial origin gives MOTS-c a distinctive research profile compared with conventional peptides encoded by nuclear DNA.<\/p>\n<h2>Mitochondrial-Derived Peptide Research<\/h2>\n<p>Mitochondria are best known for their role in cellular energy production, but they also participate in signalling, stress adaptation and communication with the nucleus.<\/p>\n<p>Mitochondrial-derived peptides are studied as potential molecular messengers within these processes.<\/p>\n<p>MOTS-c may be relevant for research involving:<\/p>\n<ul>\n<li>Mitochondrial genetic signalling<\/li>\n<li>Mitochondria-to-nucleus communication<\/li>\n<li>Cellular energy sensing<\/li>\n<li>Metabolic adaptation<\/li>\n<li>Mitochondrial stress responses<\/li>\n<li>Nuclear gene-expression regulation<\/li>\n<li>Cellular homeostasis<\/li>\n<li>Retrograde signalling<\/li>\n<li>Mitochondrial peptide biology<\/li>\n<li>Comparative mitochondrial-derived peptide analysis<\/li>\n<\/ul>\n<h2>AMPK-Related Research<\/h2>\n<p>AMP-activated protein kinase, commonly known as AMPK, is an important cellular energy sensor.<\/p>\n<p>AMPK activity is studied in relation to how cells detect and respond to changes in available energy. When cellular energy conditions change, AMPK-associated pathways can influence glucose utilisation, fatty-acid metabolism and other energy-producing processes.<\/p>\n<p>MOTS-c has been investigated in relation to AMPK activation and may be relevant for research involving:<\/p>\n<ul>\n<li>Cellular energy sensing<\/li>\n<li>AMPK signalling<\/li>\n<li>AMP-to-ATP balance<\/li>\n<li>Metabolic stress responses<\/li>\n<li>Glucose-uptake pathways<\/li>\n<li>Vyu\u017eit\u00ed mastn\u00fdch kyselin<\/li>\n<li>Cellular substrate selection<\/li>\n<li>Energy-homeostasis mechanisms<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Comparative AMPK-pathway research<\/li>\n<\/ul>\n<p>These research areas describe experimental mechanisms and do not represent established therapeutic outcomes.<\/p>\n<h2>Folate and Purine Pathway Research<\/h2>\n<p>Early mechanistic studies examined the relationship between MOTS-c, the folate cycle and de novo purine biosynthesis.<\/p>\n<p>These pathways are closely connected with nucleotide production, cellular growth and energy-status sensing.<\/p>\n<p>Potential laboratory applications include:<\/p>\n<ul>\n<li>Folate-cycle metabolism<\/li>\n<li>De novo purine biosynthesis<\/li>\n<li>AICAR-related pathway research<\/li>\n<li>Nucleotide metabolism<\/li>\n<li>Metabolic-intermediate analysis<\/li>\n<li>AMPK-associated metabolic responses<\/li>\n<li>Cellular metabolomics<\/li>\n<li>Pathway-inhibition studies<\/li>\n<li>Comparative metabolic profiling<\/li>\n<li>Biochemical pathway mapping<\/li>\n<\/ul>\n<p>The relationship between folate metabolism, purine synthesis and AMPK activation makes MOTS-c useful for laboratories studying interconnected cellular metabolic networks.<\/p>\n<h2>Mitochondrial Bioenergetics Research<\/h2>\n<p>Mitochondrial bioenergetics refers to the processes through which mitochondria convert nutrients into usable cellular energy.<\/p>\n<p>MOTS-c may be relevant for studies involving:<\/p>\n<ul>\n<li>Mitochondrial respiration<\/li>\n<li>Oxidative phosphorylation<\/li>\n<li>Oxygen-consumption analysis<\/li>\n<li>Mitochondrial efficiency<\/li>\n<li>Cellular ATP-related pathways<\/li>\n<li>Electron-transport activity<\/li>\n<li>Reaktivn\u00ed formy kysl\u00edku<\/li>\n<li>Redox handling<\/li>\n<li>Mitochondrial integrity<\/li>\n<li>Metabolic substrate utilisation<\/li>\n<li>PGC-1\u03b1-related pathways<\/li>\n<li>AMPK-dependent mitochondrial responses<\/li>\n<\/ul>\n<p>Recent preclinical research has continued to investigate how MOTS-c interacts with AMPK and PGC-1\u03b1-dependent pathways involved in muscle mitochondrial function.<\/p>\n<h2>Skeletal-Muscle Research<\/h2>\n<p>Skeletal muscle is a major site of cellular energy use and metabolic adaptation.<\/p>\n<p>MOTS-c has been examined in skeletal-muscle cells and animal models involving:<\/p>\n<ul>\n<li>Muscle-cell metabolism<\/li>\n<li>Myoblast adaptation<\/li>\n<li>Mitochondrial activity in muscle<\/li>\n<li>Glucose-utilisation pathways<\/li>\n<li>Metabolismus aminokyselin<\/li>\n<li>Glycolytic pathways<\/li>\n<li>Oxidative muscle characteristics<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Cellular responses to energetic demand<\/li>\n<li>Exercise-associated molecular signalling<\/li>\n<li>Age-related muscle metabolism<\/li>\n<li>Comparative muscle-cell assays<\/li>\n<\/ul>\n<p>These studies make MOTS-c particularly relevant for researchers investigating how mitochondrial signals influence muscle-cell energy systems.<\/p>\n<h2>Metabolic Stress Research<\/h2>\n<p>Cells are continually exposed to changing conditions involving nutrient availability, oxidative stress, temperature and energy demand.<\/p>\n<p>MOTS-c has been studied as part of adaptive cellular responses to metabolic stress.<\/p>\n<p>Potential research areas include:<\/p>\n<ul>\n<li>Nutrient-deprivation models<\/li>\n<li>Glucose-restriction research<\/li>\n<li>Oxidative-stress pathways<\/li>\n<li>Heat-stress responses<\/li>\n<li>Cellular proteostasis<\/li>\n<li>Stress-responsive gene expression<\/li>\n<li>Mitochondrial adaptation<\/li>\n<li>Cellular survival signalling<\/li>\n<li>Homeostatic regulation<\/li>\n<li>HSF1-related pathways<\/li>\n<li>Stress-induced nuclear translocation<\/li>\n<\/ul>\n<p>Laboratory findings suggest that MOTS-c may relocate to the nucleus under certain metabolic-stress conditions, where it can participate in the regulation of stress-responsive gene expression.<\/p>\n<h2>Mitochondria-to-Nucleus Communication<\/h2>\n<p>Mitochondria and the nucleus continuously exchange information to coordinate metabolism and cellular adaptation.<\/p>\n<p>MOTS-c is studied as a potential mitochondrial signal involved in retrograde communication from mitochondria to the nucleus.<\/p>\n<p>Relevant research applications include:<\/p>\n<ul>\n<li>Nuclear translocation<\/li>\n<li>Mitochondrial retrograde signalling<\/li>\n<li>Adaptive gene expression<\/li>\n<li>Stress-responsive transcription<\/li>\n<li>Nuclear\u2013mitochondrial coordination<\/li>\n<li>Metabolic gene regulation<\/li>\n<li>Cellular homeostasis<\/li>\n<li>Transcription-factor interactions<\/li>\n<li>Chromatin-associated signalling<\/li>\n<li>Comparative gene-expression analysis<\/li>\n<\/ul>\n<p>This research area helps expand the traditional view of mitochondria from energy-producing organelles to active participants in cellular communication.<\/p>\n<h2>Exercise-Associated Research<\/h2>\n<p>Endogenous MOTS-c has been studied in relation to exercise and skeletal-muscle activity.<\/p>\n<p>Human observational research has examined changes in naturally produced MOTS-c in skeletal muscle and circulation following exercise. Experimental administration studies have largely been performed in mice and cellular models.<\/p>\n<p>Potential research topics include:<\/p>\n<ul>\n<li>Exercise-induced peptide expression<\/li>\n<li>Skeletal-muscle adaptation<\/li>\n<li>Metabolic demand signalling<\/li>\n<li>Physical-stress responses<\/li>\n<li>Muscle mitochondrial function<\/li>\n<li>Vyu\u017eit\u00ed energetick\u00e9ho substr\u00e1tu<\/li>\n<li>Exercise-responsive gene expression<\/li>\n<li>Age-related metabolic adaptation<\/li>\n<li>Cellular endurance pathways<\/li>\n<li>Comparative exercise models<\/li>\n<\/ul>\n<p>MOTS-c should not be presented as a replacement for exercise or as a proven performance-enhancing product.<\/p>\n<h2>Age-Related Research Models<\/h2>\n<p>Mitochondrial function and metabolic flexibility can change with age.<\/p>\n<p>MOTS-c has been investigated in preclinical aging models involving:<\/p>\n<ul>\n<li>Age-related mitochondrial changes<\/li>\n<li>Skeletal-muscle metabolism<\/li>\n<li>Cellular energy regulation<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Stress adaptation<\/li>\n<li>Proteostasis<\/li>\n<li>Physical-capacity models<\/li>\n<li>Mitochondrial gene signalling<\/li>\n<li>Redox balance<\/li>\n<li>Comparative young and aged cell models<\/li>\n<\/ul>\n<p>Results from animal studies should not automatically be interpreted as evidence of anti-aging effects in humans.<\/p>\n<h2>Potenci\u00e1ln\u00ed v\u00fdzkumn\u00e9 aplikace<\/h2>\n<p>MOTS-c may be suitable for controlled scientific studies involving:<\/p>\n<ul>\n<li>Mitochondrial-derived peptide biology<\/li>\n<li>Mitochondrial genome signalling<\/li>\n<li>AMPK-associated pathways<\/li>\n<li>Bun\u011b\u010dn\u00fd energetick\u00fd metabolismus<\/li>\n<li>Mitochondrial respiration<\/li>\n<li>Oxidative phosphorylation<\/li>\n<li>Skeletal-muscle metabolism<\/li>\n<li>Metabolic-stress responses<\/li>\n<li>Folate-cycle research<\/li>\n<li>Purine biosynthesis<\/li>\n<li>Nuclear translocation<\/li>\n<li>Adaptive gene expression<\/li>\n<li>Metabolick\u00e1 flexibilita<\/li>\n<li>Exercise-associated signalling<\/li>\n<li>Aging-related cellular models<\/li>\n<li>Redox and oxidative-stress research<\/li>\n<li>Analytick\u00e1 charakterizace peptid\u016f<\/li>\n<li>Testov\u00e1n\u00ed stability a degradace<\/li>\n<\/ul>\n<p>The exact experimental concentrations, controls, solvents and analytical procedures should be determined by the qualified laboratory conducting the research.<\/p>\n<h2>MOTS-c Versus Conventional Peptides<\/h2>\n<p>MOTS-c differs from many commonly studied peptides because its natural sequence is encoded within mitochondrial rather than nuclear genetic material.<\/p>\n<table>\n<thead>\n<tr>\n<th>Charakteristick\u00fd<\/th>\n<th>MOTS-c<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>Peptide category<\/td>\n<td>Mitochondrial-derived peptide<\/td>\n<\/tr>\n<tr>\n<td>D\u00e9lka peptidu<\/td>\n<td>16 aminokyselin<\/td>\n<\/tr>\n<tr>\n<td>Genetic origin<\/td>\n<td>Mitochondrial 12S-rRNA region<\/td>\n<\/tr>\n<tr>\n<td>Prim\u00e1rn\u00ed oblasti v\u00fdzkumu<\/td>\n<td>Energy metabolism and mitochondrial signalling<\/td>\n<\/tr>\n<tr>\n<td>Related pathway<\/td>\n<td>AMPK-associated cellular energy sensing<\/td>\n<\/tr>\n<tr>\n<td>Research format<\/td>\n<td>Synthetic lyophilised peptide<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<p>This unusual origin makes MOTS-c particularly valuable for research into mitochondrial genetics and inter-organelle communication.<\/p>\n<h2>Specifikace produktu<\/h2>\n<table>\n<thead>\n<tr>\n<th>Charakteristika produktu<\/th>\n<th>Informace<\/th>\n<\/tr>\n<\/thead>\n<tbody>\n<tr>\n<td>N\u00e1zev produktu<\/td>\n<td>MOTS-c<\/td>\n<\/tr>\n<tr>\n<td>Cel\u00e9 jm\u00e9no<\/td>\n<td>Mitochondrial Open Reading Frame of the 12S rRNA Type-c<\/td>\n<\/tr>\n<tr>\n<td>Kategorie produktu<\/td>\n<td>Mitochondrial-derived research peptide<\/td>\n<\/tr>\n<tr>\n<td>D\u00e9lka peptidu<\/td>\n<td>16 aminokyselin<\/td>\n<\/tr>\n<tr>\n<td>Genetic origin<\/td>\n<td>Mitochondrial 12S-rRNA region<\/td>\n<\/tr>\n<tr>\n<td>Primary research focus<\/td>\n<td>Mitochondrial and metabolic signalling<\/td>\n<\/tr>\n<tr>\n<td>Related pathway<\/td>\n<td>AMPK-associated energy sensing<\/td>\n<\/tr>\n<tr>\n<td>Formul\u00e1\u0159<\/td>\n<td>Lyofilizovan\u00fd v\u00fdzkumn\u00fd materi\u00e1l<\/td>\n<\/tr>\n<tr>\n<td>Prezentace<\/td>\n<td>Bezpe\u010dn\u011b uzav\u0159en\u00e1 v\u00fdzkumn\u00e1 lahvi\u010dka<\/td>\n<\/tr>\n<tr>\n<td>Dokumentace<\/td>\n<td>Analytick\u00e9 informace specifick\u00e9 pro danou \u0161ar\u017ei<\/td>\n<\/tr>\n<tr>\n<td>Obal<\/td>\n<td>Bezpe\u010dn\u00e9 a diskr\u00e9tn\u00ed balen\u00ed<\/td>\n<\/tr>\n<tr>\n<td>Zam\u00fd\u0161len\u00e9 pou\u017eit\u00ed<\/td>\n<td>V\u011bdeck\u00fd, analytick\u00fd a laboratorn\u00ed v\u00fdzkum<\/td>\n<\/tr>\n<\/tbody>\n<\/table>\n<h2>Lyofilizovan\u00fd v\u00fdzkumn\u00fd form\u00e1t<\/h2>\n<p>MOTS-c is supplied as a lyophilised research material in a securely sealed vial.<\/p>\n<p>Lyophilisation removes moisture and helps support peptide stability during controlled storage and transport. Minor differences in appearance may occur because of production conditions, quantity and residual moisture.<\/p>\n<p>Product identity, purity and analytical quality should be confirmed through the documentation associated with the applicable batch rather than physical appearance alone.<\/p>\n<h2>Kvalita a transparentnost produkt\u016f<\/h2>\n<p>Peptides Divas focuses on clear product information, professional handling and batch-level traceability.<\/p>\n<p>Available analytical documentation may include:<\/p>\n<ul>\n<li>Identifikace produktu<\/li>\n<li>Aminokyselinov\u00e1 sekvence<\/li>\n<li>\u010c\u00edslo \u0161ar\u017ee nebo \u0161ar\u017ee<\/li>\n<li>Uv\u00e1d\u011bn\u00e1 \u010distota<\/li>\n<li>HPLC anal\u00fdza<\/li>\n<li>Data hmotnostn\u00ed spektrometrie<\/li>\n<li>Informace o testov\u00e1n\u00ed<\/li>\n<li>Vzhled produktu<\/li>\n<li>Doporu\u010den\u00ed pro skladov\u00e1n\u00ed<\/li>\n<\/ul>\n<p>This provides researchers with clear and traceable product information for the applicable batch.<\/p>\n<h2>Informace o \u00falo\u017ei\u0161ti<\/h2>\n<p>Store MOTS-c in its original sealed packaging under the conditions stated on the product label and applicable batch documentation.<\/p>\n<p>Protect the research material from:<\/p>\n<ul>\n<li>P\u0159\u00edm\u00e9 slune\u010dn\u00ed sv\u011btlo<\/li>\n<li>Nadm\u011brn\u00e9 teplo<\/li>\n<li>Vlhkost<\/li>\n<li>Kontaminace<\/li>\n<li>Po\u0161kozen\u00fd obal<\/li>\n<li>Opakovan\u00e9 teplotn\u00ed v\u00fdkyvy<\/li>\n<li>Zbyte\u010dn\u00e9 vystaven\u00ed vzduchu<\/li>\n<\/ul>\n<p>P\u0159ij\u00edmaj\u00edc\u00ed laborato\u0159 je zodpov\u011bdn\u00e1 za stanoven\u00ed vhodn\u00fdch postup\u016f p\u0159\u00edpravy, manipulace a skladov\u00e1n\u00ed pro sv\u016fj specifick\u00fd v\u00fdzkumn\u00fd protokol.<\/p>\n<h2>Why Choose MOTS-c?<\/h2>\n<p>MOTS-c offers a distinctive research profile for laboratories studying mitochondrial communication, cellular energy sensing and metabolic adaptation.<\/p>\n<p>Key research advantages include:<\/p>\n<ul>\n<li>Unique mitochondrial genetic origin<\/li>\n<li>Clearly defined 16-amino-acid structure<\/li>\n<li>Relevant for AMPK-pathway research<\/li>\n<li>Suitable for mitochondrial bioenergetics studies<\/li>\n<li>Useful for skeletal-muscle cell models<\/li>\n<li>Relevant for metabolic-stress research<\/li>\n<li>Valuable for mitochondria-to-nucleus signalling studies<\/li>\n<li>Convenient lyophilised research format<\/li>\n<li>Jasn\u00e9 informace o produktu specifick\u00e9 pro danou \u0161ar\u017ei<\/li>\n<\/ul>\n<h2>Pro\u010d objedn\u00e1vat od Peptides Divas?<\/h2>\n<p>Peptides Divas combines carefully selected research materials with fast, reliable and professional service.<\/p>\n<p>Customers benefit from:<\/p>\n<ul>\n<li>Jasn\u011b zobrazen\u00e9 specifikace produktu<\/li>\n<li>Analytick\u00e9 informace specifick\u00e9 pro danou \u0161ar\u017ei<\/li>\n<li>Rychl\u00e9 zpracov\u00e1n\u00ed objedn\u00e1vky<\/li>\n<li>Bezpe\u010dn\u00e9 a diskr\u00e9tn\u00ed balen\u00ed<\/li>\n<li>Mo\u017enosti sledovateln\u00e9 dopravy<\/li>\n<li>Pe\u010dliv\u00e1 ochrana lahvi\u010dky<\/li>\n<li>Responzivn\u00ed z\u00e1kaznick\u00e1 podpora<\/li>\n<li>Spolehliv\u00e9 evropsk\u00e9 doru\u010den\u00ed<\/li>\n<\/ul>\n<p>Choose MOTS-c from Peptides Divas for advanced laboratory research involving mitochondrial signalling, cellular energy metabolism, AMPK pathways and adaptive stress responses.<\/p>\n<p>Pouze pro laboratorn\u00ed v\u00fdzkumn\u00e9 pou\u017eit\u00ed. Nen\u00ed ur\u010deno pro hum\u00e1nn\u00ed ani veterin\u00e1rn\u00ed pou\u017eit\u00ed.<\/p>","protected":false},"featured_media":414,"comment_status":"open","ping_status":"closed","template":"","meta":{"_acf_changed":false,"nf_dc_page":"","om_disable_all_campaigns":false,"_monsterinsights_skip_tracking":false,"_monsterinsights_sitenote_active":false,"_monsterinsights_sitenote_note":"","_monsterinsights_sitenote_category":0},"product_brand":[],"product_cat":[36],"product_tag":[55],"class_list":["post-423","product","type-product","status-publish","has-post-thumbnail","product_cat-growth-hormone-pathway-peptides","product_tag-40-mg","first","instock","shipping-taxable","purchasable","product-type-simple"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v27.9 (Yoast SEO v28.0) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>MOTS-c Mitochondrial Research Peptide | Peptides Divas<\/title>\n<meta name=\"description\" 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