Proteomics

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Inhibition of a novel CLK1-THRAP3-PPARγ axis improves insulin sensitivity


ABSTRACT: CLK1 plays a critical role in controlling energy expenditure through the CLK1-Thrap3-PPARγ axis.

ORGANISM(S): Homo Sapiens Mus Musculus

SUBMITTER: Jiarui Wu  

PROVIDER: PXD027958 | iProX | Mon Aug 16 00:00:00 BST 2021

REPOSITORIES: iProX

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Inhibition of a Novel CLK1-THRAP3-PPARγ Axis Improves Insulin Sensitivity.

Wang Zhenguo Z   Gao Xiaojing X   Li Qingrun Q   Zhu Hongwen H   Zhao Xiangjie X   Garcia-Barrio Minerva M   Zhang Jifeng J   Guo Yanhong Y   Chen Y Eugene YE   Zeng Rong R   Wu Jia-Rui JR   Chang Lin L  

Frontiers in physiology 20210830


Increasing energy expenditure by promoting "browning" in adipose tissues is a promising strategy to prevent obesity and associated diabetes. To uncover potential targets of cold exposure, which induces energy expenditure, we performed phosphoproteomics profiling in brown adipose tissue of mice housed in mild cold environment at 16°C. We identified CDC2-like kinase 1 (CLK1) as one of the kinases that were significantly downregulated by mild cold exposure. In addition, genetic knockout of CLK1 or  ...[more]

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