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SMP30-mediated synthesis of vitamin C activates the liver PPARα/FGF21 axis to regulate thermogenesis in mice

Authors
 Bonggi Lee  ;  Hye Jin An  ;  Dae Hyun Kim  ;  Min-Kyeong Lee  ;  Hyeon Hak Jeong  ;  Ki Wung Chung  ;  Younghoon Go  ;  Arnold Y Seo  ;  Il Yong Kim  ;  Je Kyung Seong  ;  Byung Pal Yu  ;  Jaewon Lee  ;  Eunok Im  ;  In-Kyu Lee  ;  Myung-Shik Lee  ;  Ken-Ichi Yamada  ;  Hae Young Chung 
Citation
 EXPERIMENTAL AND MOLECULAR MEDICINE, Vol.54(11) : 2036-2046, 2022-11 
Journal Title
EXPERIMENTAL AND MOLECULAR MEDICINE
ISSN
 1226-3613 
Issue Date
2022-11
MeSH
Adipose Tissue, Brown / metabolism ; Animals ; Ascorbic Acid* / metabolism ; Ascorbic Acid* / pharmacology ; Calcium-Binding Proteins / metabolism ; Intracellular Signaling Peptides and Proteins / metabolism ; Liver / metabolism ; Mice ; Mice, Inbred C57BL ; Mice, Knockout ; PPAR alpha* / genetics ; PPAR alpha* / metabolism ; Thermogenesis / genetics ; Vitamins / metabolism
Abstract
The vitamin-C-synthesizing enzyme senescent marker protein 30 (SMP30) is a cold resistance gene in Drosophila, and vitamin C concentration increases in brown adipose tissue post-cold exposure. However, the roles of SMP30 in thermogenesis are unknown. Here, we tested the molecular mechanism of thermogenesis using wild-type (WT) and vitamin C-deficient SMP30-knockout (KO) mice. SMP30-KO mice gained more weight than WT mice without a change in food intake in response to short-term high-fat diet feeding. Indirect calorimetry and cold-challenge experiments indicated that energy expenditure is lower in SMP30-KO mice, which is associated with decreased thermogenesis in adipose tissues. Therefore, SMP30-KO mice do not lose weight during cold exposure, whereas WT mice lose weight markedly. Mechanistically, the levels of serum FGF21 were notably lower in SMP30-KO mice, and vitamin C supplementation in SMP30-KO mice recovered FGF21 expression and thermogenesis, with a marked reduction in body weight during cold exposure. Further experiments revealed that vitamin C activates PPARα to upregulate FGF21. Our findings demonstrate that SMP30-mediated synthesis of vitamin C activates the PPARα/FGF21 axis, contributing to the maintenance of thermogenesis in mice.

© 2022. The Author(s).
Files in This Item:
T202303562.pdf Download
DOI
10.1038/s12276-022-00888-9
Appears in Collections:
1. College of Medicine (의과대학) > BioMedical Science Institute (의생명과학부) > 1. Journal Papers
Yonsei Authors
Lee, Myung Shik(이명식) ORCID logo https://orcid.org/0000-0003-3292-1720
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/196704
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