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p38γ MAPK 在生理学和疾病中的炎症和代谢信号转导。

p38γ MAPK Inflammatory and Metabolic Signaling in Physiology and Disease.

机构信息

Department of Pharmacology and Toxicology, Medical College of Wisconsin, Milwaukee, WI 53226, USA.

Research Service, Clement J. Zablocki Veterans Affairs Medical Center, Milwaukee, WI 53295, USA.

出版信息

Cells. 2023 Jun 21;12(13):1674. doi: 10.3390/cells12131674.

Abstract

p38γ MAPK (also called ERK6 or SAPK3) is a family member of stress-activated MAPKs and has common and specific roles as compared to other p38 proteins in signal transduction. Recent studies showed that, in addition to inflammation, p38γ metabolic signaling is involved in physiological exercise and in pathogenesis of cancer, diabetes, and Alzheimer's disease, indicating its potential as a therapeutic target. p38γphosphorylates at least 19 substrates through which p38γ activity is further modified to regulate life-important cellular processes such as proliferation, differentiation, cell death, and transformation, thereby impacting biological outcomes of p38γ-driven pathogenesis. P38γ signaling is characterized by its unique reciprocal regulation with its specific phosphatase PTPH1 and by its direct binding to promoter DNAs, leading to transcriptional activation of targets including cancer-like stem cell drivers. This paper will review recent findings about p38γ inflammation and metabolic signaling in physiology and diseases. Moreover, we will discuss the progress in the development of p38γ-specific pharmacological inhibitors for therapeutic intervention in disease prevention and treatment by targeting the p38γ signaling network.

摘要

p38γ MAPK(也称为 ERK6 或 SAPK3)是应激激活 MAPK 的家族成员,与其他 p38 蛋白相比,在信号转导中具有共同和特定的作用。最近的研究表明,除了炎症外,p38γ代谢信号还参与生理运动以及癌症、糖尿病和阿尔茨海默病的发病机制,表明其作为治疗靶点的潜力。p38γ 通过至少 19 个底物进行磷酸化,通过进一步修饰 p38γ 活性来调节增殖、分化、细胞死亡和转化等生命重要的细胞过程,从而影响 p38γ 驱动的发病机制的生物学结果。p38γ 信号转导的特点是其与特定的磷酸酶 PTPH1 的独特的相互调节,以及其与启动子 DNA 的直接结合,导致包括癌样干细胞驱动因子在内的靶基因的转录激活。本文将综述 p38γ 在生理和疾病中的炎症和代谢信号的最新发现。此外,我们将讨论针对 p38γ 信号网络,开发 p38γ 特异性药理抑制剂以进行疾病预防和治疗的治疗干预的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b946/10341180/bb380ea98e15/cells-12-01674-g001.jpg

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