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Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)

Brown adipose tissue (BAT) is a promising weapon to combat obesity and metabolic disease. BAT is thermogenic and consumes substantial amounts of glucose and fatty acids as fuel for thermogenesis and energy expenditure. To study BAT function in large human longitudinal cohorts, safe and precise detec...

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Autores principales: Leow, Melvin Khee-Shing, Rengaraj, Anantharaj, Narasimhan, Kothandaraman, Verma, Sanjay K., Yaligar, Jadegoud, Thu, Giang Le Thi, Sun, Lijuan, Goh, Hui Jen, Govindharajulu, Priya, Sadananthan, Suresh Anand, Michael, Navin, Meng, Wei, Gallart-Palau, Xavier, Sun, Lei, Karnani, Neerja, Sze, Newman Siu Kwan, Velan, S. Sendhil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142831/
https://www.ncbi.nlm.nih.gov/pubmed/35502767
http://dx.doi.org/10.1042/BSR20212543
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author Leow, Melvin Khee-Shing
Rengaraj, Anantharaj
Narasimhan, Kothandaraman
Verma, Sanjay K.
Yaligar, Jadegoud
Thu, Giang Le Thi
Sun, Lijuan
Goh, Hui Jen
Govindharajulu, Priya
Sadananthan, Suresh Anand
Michael, Navin
Meng, Wei
Gallart-Palau, Xavier
Sun, Lei
Karnani, Neerja
Sze, Newman Siu Kwan
Velan, S. Sendhil
author_facet Leow, Melvin Khee-Shing
Rengaraj, Anantharaj
Narasimhan, Kothandaraman
Verma, Sanjay K.
Yaligar, Jadegoud
Thu, Giang Le Thi
Sun, Lijuan
Goh, Hui Jen
Govindharajulu, Priya
Sadananthan, Suresh Anand
Michael, Navin
Meng, Wei
Gallart-Palau, Xavier
Sun, Lei
Karnani, Neerja
Sze, Newman Siu Kwan
Velan, S. Sendhil
author_sort Leow, Melvin Khee-Shing
collection PubMed
description Brown adipose tissue (BAT) is a promising weapon to combat obesity and metabolic disease. BAT is thermogenic and consumes substantial amounts of glucose and fatty acids as fuel for thermogenesis and energy expenditure. To study BAT function in large human longitudinal cohorts, safe and precise detection methodologies are needed. Although regarded a gold standard, the foray of PET-CT into BAT research and clinical applications is limited by its high ionizing radiation doses. Here, we show that brown adipocytes release exosomes in blood plasma that can be utilized to assess BAT activity. In the present study, we investigated circulating protein biomarkers that can accurately and reliably reflect BAT activation triggered by cold exposure, capsinoids ingestion and thyroid hormone excess in humans. We discovered an exosomal protein, methylene tetrahydrofolate dehydrogenase (NADP(+) dependent) 1-like (MTHFD1L), to be overexpressed and detectable in plasma for all three modes of BAT activation in human subjects. This mitochondrial protein is packaged as a cargo within multivesicular bodies of the endosomal compartment and secreted as exosomes via exocytosis from activated brown adipocytes into the circulation. To support MTHFD1L as a conserved BAT activation response in other vertebrates, we examined a rodent model and also proved its presence in blood of rats following BAT activation by cold exposure. Plasma concentration of exosomal MTHFD1L correlated with human BAT activity as confirmed by PET-MR in humans and supported by data from rats. Thus, we deduce that MTHFD1L appears to be overexpressed in activated BAT compared to BAT in the basal nonstimulated state.
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spelling pubmed-91428312022-06-01 Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L) Leow, Melvin Khee-Shing Rengaraj, Anantharaj Narasimhan, Kothandaraman Verma, Sanjay K. Yaligar, Jadegoud Thu, Giang Le Thi Sun, Lijuan Goh, Hui Jen Govindharajulu, Priya Sadananthan, Suresh Anand Michael, Navin Meng, Wei Gallart-Palau, Xavier Sun, Lei Karnani, Neerja Sze, Newman Siu Kwan Velan, S. Sendhil Biosci Rep Diabetes & Metabolic Disorders Brown adipose tissue (BAT) is a promising weapon to combat obesity and metabolic disease. BAT is thermogenic and consumes substantial amounts of glucose and fatty acids as fuel for thermogenesis and energy expenditure. To study BAT function in large human longitudinal cohorts, safe and precise detection methodologies are needed. Although regarded a gold standard, the foray of PET-CT into BAT research and clinical applications is limited by its high ionizing radiation doses. Here, we show that brown adipocytes release exosomes in blood plasma that can be utilized to assess BAT activity. In the present study, we investigated circulating protein biomarkers that can accurately and reliably reflect BAT activation triggered by cold exposure, capsinoids ingestion and thyroid hormone excess in humans. We discovered an exosomal protein, methylene tetrahydrofolate dehydrogenase (NADP(+) dependent) 1-like (MTHFD1L), to be overexpressed and detectable in plasma for all three modes of BAT activation in human subjects. This mitochondrial protein is packaged as a cargo within multivesicular bodies of the endosomal compartment and secreted as exosomes via exocytosis from activated brown adipocytes into the circulation. To support MTHFD1L as a conserved BAT activation response in other vertebrates, we examined a rodent model and also proved its presence in blood of rats following BAT activation by cold exposure. Plasma concentration of exosomal MTHFD1L correlated with human BAT activity as confirmed by PET-MR in humans and supported by data from rats. Thus, we deduce that MTHFD1L appears to be overexpressed in activated BAT compared to BAT in the basal nonstimulated state. Portland Press Ltd. 2022-05-20 /pmc/articles/PMC9142831/ /pubmed/35502767 http://dx.doi.org/10.1042/BSR20212543 Text en © 2022 The Author(s). https://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Diabetes & Metabolic Disorders
Leow, Melvin Khee-Shing
Rengaraj, Anantharaj
Narasimhan, Kothandaraman
Verma, Sanjay K.
Yaligar, Jadegoud
Thu, Giang Le Thi
Sun, Lijuan
Goh, Hui Jen
Govindharajulu, Priya
Sadananthan, Suresh Anand
Michael, Navin
Meng, Wei
Gallart-Palau, Xavier
Sun, Lei
Karnani, Neerja
Sze, Newman Siu Kwan
Velan, S. Sendhil
Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)
title Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)
title_full Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)
title_fullStr Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)
title_full_unstemmed Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)
title_short Activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (NADP dependent) 1-like protein (MTHFD1L)
title_sort activated brown adipose tissue releases exosomes containing mitochondrial methylene tetrahydrofolate dehydrogenase (nadp dependent) 1-like protein (mthfd1l)
topic Diabetes & Metabolic Disorders
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9142831/
https://www.ncbi.nlm.nih.gov/pubmed/35502767
http://dx.doi.org/10.1042/BSR20212543
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