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Identification of a rhodanine derivative BML-260 as a potent stimulator of UCP1 expression
Zhuanghui Feng1, Yuda Wei1, Yongxian Zhang1
1CAS Key Laboratory of Nutrition, Metabolism and Food Safety, Shanghai Institute of Nutrition and Health, Shanghai Institutes for Biological Sciences, University of Chinese Academy of Sciences, Chinese Academy of Sciences, 200031, P. R. China.
Abstract:
Identification of proper agents to increase or activate UCP1+ cells in adipose tissues remains a potent therapeutic strategy to combat obesity. Screening systems for UCP1 activators have been previously established and allow for unbiased discovery of effective compound(s). Methods: A previously established Ucp1-2A-GFP reporter system was applied to a chemical library containing 33 phosphatase inhibitors. Compounds that can significantly activate UCP1 expression were further tested in vivo in mouse adipose tissues. Possible underlying mechanism was explored via RNA profiling, CMAP analysis, CRISPR targeting as well as inhibitor treatments. Results: We identified BML-260, a known potent inhibitor of the dual-specific phosphatase JSP-1, that significantly increased UCP1 expression in both brown and white adipocytes. BML-260 treatment also activated oxidative phosphorylation genes, increased mitochondrial activity as well as heat generation in vitro and in vivo. Mechanistic studies revealed that effect of BML-260 on adipocytes was partly through activated CREB, STAT3 and PPAR signaling pathways, and was unexpectedly JSP-1 independent. Conclusion: The rhodanine derivate BML-260 was previously identified to be a JSP-1 inhibitor, and thus was proposed to treat inflammatory and proliferative disorders associated with dysfunctional JNK signaling. This work provides evidences that BML-260 can also exert a JSP-1-independent effect in activating UCP1 and thermogenesis in adipocytes, and be potentially applied to treat obesity.
Insights
Researchers identified BML-260, a compound that activates uncoupling protein 1 (UCP1) and enhances thermogenesis in fat cells. This discovery offers a potential new strategy for treating obesity by boosting energy expenditure.
Area of Science:
- Metabolism and Endocrinology
- Pharmacology
- Cell Biology
Background:
- Obesity treatment requires agents that activate UCP1+ cells in adipose tissue.
- Existing screening systems enable unbiased discovery of UCP1 activators.
Purpose of the Study:
- To identify novel compounds that activate UCP1 expression in adipose tissue.
- To investigate the mechanism of action for identified UCP1 activators.
Main Methods:
- Utilized a Ucp1-2A-GFP reporter system to screen a chemical library of phosphatase inhibitors.
- Conducted in vivo studies in mouse adipose tissues to validate compound efficacy.
- Employed RNA profiling, CMAP analysis, and CRISPR targeting to explore underlying mechanisms.
Main Results:
- Identified BML-260, a JSP-1 inhibitor, as a potent activator of UCP1 expression in brown and white adipocytes.
- BML-260 treatment increased oxidative phosphorylation, mitochondrial activity, and heat generation in vitro and in vivo.
- Mechanistic studies indicated BML-260's effects were partly mediated by CREB, STAT3, and PPAR pathways, independent of JSP-1.
Conclusions:
- BML-260 demonstrates a JSP-1-independent mechanism for activating UCP1 and thermogenesis in adipocytes.
- BML-260 shows potential as a therapeutic agent for obesity by promoting energy expenditure.
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