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新型有机硒BTSA基衍生物作为用于抗糖尿病药物发现的强效、可逆和选择性PPARγ共价调节剂的鉴定

Identification of Novel Organo-Se BTSA-Based Derivatives as Potent, Reversible, and Selective PPARγ Covalent Modulators for Antidiabetic Drug Discovery.

作者信息

Chen Fangyuan, Liu Qingmei, Ma Lei, Yan Cuishi, Zhang Haiman, Zhou Zhi, Yi Wei

机构信息

Guangzhou Municipal and Guangdong Provincial Key Laboratory of Protein Modification and Degradation & Molecular Target and Clinical Pharmacology, the State Key Laboratory of Respiratory Disease, School of Pharmaceutical Sciences & the Fifth Affiliated Hospital, Guangzhou Medical University, Guangzhou, Guangdong 511436, China.

出版信息

J Med Chem. 2025 Jan 9;68(1):819-831. doi: 10.1021/acs.jmedchem.4c02803. Epub 2024 Dec 20.

Abstract

Recent studies have identified selective peroxisome proliferator-activated receptor γ (PPARγ) modulators, which synergistically engage in the inhibition mechanism of PPARγ-Ser273 phosphorylation, as a promising approach for developing safer and more effective antidiabetic drugs. Herein, we present the design, synthesis, and evaluation of a new class of organo-Se compounds, namely, benzothiaselenazole-1-oxides (BTSAs), acting as potent, reversible, and selective PPARγ covalent modulators. Notably, , especially , displayed a high binding affinity and superior antidiabetic effects with diminished side effects. This is mainly because it can reversibly form a unique covalent bond with the Cys285 residue in PPARγ-LBD. Further mechanistic investigations revealed that it manifested such desired pharmacological profiles primarily by effectively suppressing PPARγ-Ser273 phosphorylation, enhancing glucose metabolism, and selectively upregulating the expression of insulin-sensitive genes. Collectively, our results suggest that holds promise as a lead compound for treating T2DM and also provides an innovative reversible covalent warhead reference for future covalent drug design.

摘要

最近的研究已经确定了选择性过氧化物酶体增殖物激活受体γ(PPARγ)调节剂,其协同参与PPARγ-Ser273磷酸化的抑制机制,是开发更安全、更有效的抗糖尿病药物的一种有前景的方法。在此,我们展示了一类新型有机硒化合物,即苯并噻硒唑-1-氧化物(BTSAs)的设计、合成和评估,它们作为强效、可逆和选择性的PPARγ共价调节剂。值得注意的是,尤其是,表现出高结合亲和力和优异的抗糖尿病作用,且副作用减少。这主要是因为它可以与PPARγ-LBD中的Cys285残基可逆地形成独特的共价键。进一步的机制研究表明,它主要通过有效抑制PPARγ-Ser273磷酸化、增强葡萄糖代谢和选择性上调胰岛素敏感基因的表达来表现出这种理想的药理学特征。总体而言,我们的结果表明有望作为治疗2型糖尿病的先导化合物,也为未来的共价药物设计提供了一种创新的可逆共价弹头参考。

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