基于Ser273磷酸化抑制机制的ppar γ靶向配体研究进展及治疗应用

IF 10.8 1区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Fangyuan Chen , Lei Ma , Qingmei Liu, Zhi Zhou, Wei Yi
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引用次数: 0

摘要

PPARγ作为一种主配体依赖转录因子,调节与代谢稳态和炎症免疫相关的多种关键基因的表达。在现代药物发现中,它已被公认为一种受欢迎的可药物靶点。与其他核受体类似,PPARγ是一种磷酸化蛋白,其生物学功能受磷酸化调控,特别是在Ser273位点,由CDK5或ERK介导。近十年来,PPARγ-Ser273磷酸化水平过高已被证实是促进一些重大疾病发生发展的关键因素。能够抑制PPARγ-Ser273磷酸化的配体显示出巨大的治疗潜力。尽管取得了这些成果,但据我们所知,目前还没有针对这一主题的相关综述。因此,我们在此总结PPARγ和CDK5/ erk介导的PPARγ- ser273磷酸化的基本知识及其在代表性疾病中的生理病理作用。本文还综述了基于这一机制的ppar γ靶向配体的研究进展及其在治疗中的应用。最后,提出了今后研究的几个方向。我们希望这篇综述能够引起科学界的更多启发,最终促进PPARγ-Ser273磷酸化参与机制成为解决人类疾病临床治疗的一个有希望的突破点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent advances and therapeutic applications of PPARγ-targeted ligands based on the inhibition mechanism of Ser273 phosphorylation

Recent advances and therapeutic applications of PPARγ-targeted ligands based on the inhibition mechanism of Ser273 phosphorylation
PPARγ functions as a master ligand-dependent transcription factor that regulates the expressions of a variety of key genes related to metabolic homeostasis and inflammatory immunity. It has been recognized as a popular and druggable target in modern drug discovery. Similar to other nuclear receptors, PPARγ is a phosphoprotein, and its biological functions are regulated by phosphorylation, especially at Ser273 site which is mediated by CDK5 or ERK. In the past decade, the excessive level of PPARγ-Ser273 phosphorylation has been confirmed to be a crucial factor in promoting the occurrence and development of some major diseases. Ligands capable of inhibiting PPARγ-Ser273 phosphorylation have shown great potentials for treatment. Despite these achievements, to our knowledge, no related review focusing on this topic has been conducted so far. Therefore, we herein summarize the basic knowledge of PPARγ and CDK5/ERK-mediated PPARγ-Ser273 phosphorylation as well as its physiopathological role in representative diseases. We also review the developments and therapeutic applications of PPARγ-targeted ligands based on this mechanism. Finally, we suggest several directions for future investigations. We expect that this review can evoke more inspiration of scientific communities, ultimately facilitating the promotion of the PPARγ-Ser273 phosphorylation-involved mechanism as a promising breakthrough point for addressing the clinical treatment of human diseases.
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来源期刊
Metabolism: clinical and experimental
Metabolism: clinical and experimental 医学-内分泌学与代谢
CiteScore
18.90
自引率
3.10%
发文量
310
审稿时长
16 days
期刊介绍: Metabolism upholds research excellence by disseminating high-quality original research, reviews, editorials, and commentaries covering all facets of human metabolism. Consideration for publication in Metabolism extends to studies in humans, animal, and cellular models, with a particular emphasis on work demonstrating strong translational potential. The journal addresses a range of topics, including: - Energy Expenditure and Obesity - Metabolic Syndrome, Prediabetes, and Diabetes - Nutrition, Exercise, and the Environment - Genetics and Genomics, Proteomics, and Metabolomics - Carbohydrate, Lipid, and Protein Metabolism - Endocrinology and Hypertension - Mineral and Bone Metabolism - Cardiovascular Diseases and Malignancies - Inflammation in metabolism and immunometabolism
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