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坏死性凋亡细胞死亡信号传导中的蛋白质构象变化

Protein shapeshifting in necroptotic cell death signaling.

作者信息

Hoblos Hanadi, Cawthorne Wayne, Samson André L, Murphy James M

机构信息

Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, VIC 3052, Australia; Department of Medical Biology, University of Melbourne, Parkville, VIC 3052, Australia.

Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, VIC 3052, Australia; Department of Medical Biology, University of Melbourne, Parkville, VIC 3052, Australia; Drug Discovery Biology, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, VIC 3052, Australia.

出版信息

Trends Biochem Sci. 2025 Feb;50(2):92-105. doi: 10.1016/j.tibs.2024.11.006. Epub 2024 Dec 26.

Abstract

Necroptosis is a mode of programmed cell death executed by the mixed lineage kinase domain-like (MLKL) pseudokinase following its activation by the upstream receptor-interacting protein kinase-3 (RIPK3), subsequent to activation of death, Toll-like, and pathogen receptors. The pathway originates in innate immunity, although interest has surged in therapeutically targeting necroptosis owing to its dysregulation in inflammatory diseases. Here, we explore how protein conformation and higher order assembly of the pathway effectors - Z-DNA-binding protein-1 (ZBP1), RIPK1, RIPK3, and MLKL - can be modulated by post-translational modifications, such as phosphorylation, ubiquitylation, and lipidation, and intermolecular interactions to tune activities and modulate necroptotic signaling flux. As molecular level knowledge of cell death signaling grows, we anticipate targeting the conformations of key necrosomal effector proteins will emerge as new avenues for drug development.

摘要

坏死性凋亡是一种程序性细胞死亡模式,由混合谱系激酶结构域样(MLKL)伪激酶在被上游受体相互作用蛋白激酶-3(RIPK3)激活后执行,而RIPK3的激活发生在死亡受体、Toll样受体和病原体受体激活之后。尽管由于坏死性凋亡在炎症性疾病中的失调,针对其进行治疗性靶向的研究兴趣激增,但该途径起源于固有免疫。在这里,我们探讨了该途径的效应蛋白——Z-DNA结合蛋白-1(ZBP1)、RIPK1、RIPK3和MLKL——的蛋白质构象和高阶组装如何通过翻译后修饰(如磷酸化、泛素化和脂化)以及分子间相互作用进行调节,以调整活性并调节坏死性凋亡信号通量。随着细胞死亡信号分子水平知识的不断增长,我们预计靶向关键坏死小体效应蛋白的构象将成为药物开发的新途径。

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