Pharmacological inhibition of CLPP stabilizes LETMD1 to boost thermogenesis and alleviate obesity

Obesity poses a severe global health burden, and activating adipose thermogenesis offers a promising therapeutic avenue. However, the contribution of mitochondrial proteostasis to thermogenic regulation remains elusive. Here, we identify mitochondrial protease CLPP as a negative regulator of adipose thermogenesis. Pharmacological suppression of CLPP activity enhances thermogenic programmes in adipocytes. Mechanistically, CLPP interacts with LETMD1 and promotes its degradation at the post-translational level, while LETMD1 stabilization is required for the thermogenic effects induced by CLPP suppression. In vivo, pharmacological suppression of CLPP activity using hinokiflavone significantly enhances energy expenditure, attenuates weight gain, and improves insulin sensitivity in obese mice. Collectively, our study identifies a CLPP–LETMD1 regulatory axis that regulates adipose thermogenesis and highlights CLPP suppression as a potential therapeutic strategy for obesity intervention.

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Publication Details

Journal
Adipocyte
Published
2026-09-30
DOI
https://doi.org/10.1080/21623945.2026.2737917
Primary Topic
Adipose Tissue and Metabolism
Type
article
Field-Weighted Citation Impact
0.00
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Pharmacological inhibition of CLPP stabilizes LETMD1 to boost thermogenesis and alleviate obesity

Bing Luan, Huiwen Yuan, Zhen-Ning Zhang, Jingang Wang et al.
Adipocyte
Adipose Tissue and Metabolism
article

Pharmacological inhibition of CLPP stabilizes LETMD1 to boost thermogenesis and alleviate obesity

Bing Luan, Huiwen Yuan, Zhen-Ning Zhang, Jingang Wang, Yuqing Deng
article en

Abstract

Obesity poses a severe global health burden, and activating adipose thermogenesis offers a promising therapeutic avenue. However, the contribution of mitochondrial proteostasis to thermogenic regulation remains elusive. Here, we identify mitochondrial protease CLPP as a negative regulator of adipose thermogenesis. Pharmacological suppression of CLPP activity enhances thermogenic programmes in adipocytes. Mechanistically, CLPP interacts with LETMD1 and promotes its degradation at the post-translational level, while LETMD1 stabilization is required for the thermogenic effects induced by CLPP suppression. In vivo, pharmacological suppression of CLPP activity using hinokiflavone significantly enhances energy expenditure, attenuates weight gain, and improves insulin sensitivity in obese mice. Collectively, our study identifies a CLPP–LETMD1 regulatory axis that regulates adipose thermogenesis and highlights CLPP suppression as a potential therapeutic strategy for obesity intervention.

AdipocyteVol. 15(1)
Tongji University (CN), Tongji Hospital (CN)
Openalex Percentile: Top 12%
Adipose Tissue and Metabolism
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Pharmacological inhibition of CLPP stabilizes LETMD1 to boost thermogenesis and alleviate obesity — Bing Luan, Huiwen Yuan, et al. · Adipocyte (2026) | TGRS Research Map | TGRS