[n端规则通路在蛋白质降解中的作用研究进展]。

Q3 Medicine 生理学报 Pub Date : 2024-12-25
Na-Xin Xu, Yong Liu, Yi Wang, Shu-Kuan Ling
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引用次数: 0

摘要

n端规则途径是一种由泛素-蛋白酶体系统介导的蛋白质降解途径,通过识别蛋白质n端特异性残基特异性靶向和降解目标蛋白质。在n端规则通路中起关键作用的残基被称为degrons,也称为N-degrons,因为它们通常在蛋白质的n端不稳定。目前,在真核生物中已经发现了几种n端规则通路,包括Arg/ n端规则、Ac/ n端规则和Pro/ n端规则通路,以及最近发现的Gly/ n端规则通路。Ac/ n端规则通路靶向含有n端乙酰化(nt -乙酰化)残基的蛋白质。另一方面,Arg/ n端规则通路针对某些未乙酰化残基,并涉及n端精氨酸化。对于含有n端脯氨酸(Pro)和甘氨酸(Gly)残基的蛋白质,它们既不会被乙酰化修饰,也不会通过Arg/ n端规则途径被识别。因此,这些蛋白主要通过Pro/ n端规则途径和Gly/ n端规则途径被识别和降解。通过n端规则途径介导的降解对特定蛋白的调控在许多生理和病理过程中起重要作用,如心血管发育、神经发生、减数分裂、精子发生、HPV感染和细胞凋亡。在这篇综述中,我们总结了几种已知的n端规则通路的作用和机制,并讨论了它们与某些疾病的关系。作为一个独立的蛋白质降解系统,n端规则通路仍有无数的生物学秘密有待探索。对这些途径的全面了解可能会发现各种疾病的新治疗靶点。
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[Progress on the role of N-end rule pathways in protein degradation].

The N-end rule pathway is a protein degradation pathway mediated by the ubiquitin-proteasome system, which specifically targets and degrades target proteins by recognizing specific residues at the N-terminus of the proteins. The residues which play a crucial role in the N-end rule pathway are called degrons, also known as N-degrons, as they are usually unstable at the N-terminal end of the protein. Currently, several N-end rule pathways have been identified in the eukaryotes, including the Arg/N-end rule, Ac/N-end rule, and Pro/N-end rule pathways, as well as the recently discovered Gly/N-end rule pathway. The Ac/N-end rule pathway targets proteins containing N-terminal acetylation (Nt-acetylation) residues. The Arg/N-end rule pathway, on the other hand, targets certain unacetylated residues and involves N-terminal arginylation. For proteins with N-terminal proline (Pro) and glycine (Gly) residues, they are neither modified by acetylation nor recognized through the Arg/N-end rule pathway. Therefore, these proteins are primarily recognized and degraded through the Pro/N-end rule pathway and the Gly/N-end rule pathway. The regulation of specific proteins through N-end rule pathway-mediated degradation plays an important role in numerous physiological and pathological processes, such as cardiovascular development, neurogenesis, meiosis, spermatogenesis, HPV infection, and cell apoptosis. In this review, we summarize the role and mechanisms of several known N-end rule pathways and discuss their relationship with certain diseases. As an independent protein degradation system, the N-end rule pathways still hold countless biological secrets waiting for exploring. The comprehensive understanding of these pathways could potentially uncover novel therapeutic targets for various diseases.

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来源期刊
生理学报
生理学报 Medicine-Medicine (all)
CiteScore
1.20
自引率
0.00%
发文量
4820
期刊介绍: Acta Physiologica Sinica (APS) is sponsored by the Chinese Association for Physiological Sciences and Shanghai Institutes of Biological Sciences, Chinese Academy of Sciences (CAS), and is published bimonthly by the Science Press, China. APS publishes original research articles in the field of physiology as well as research contributions from other biomedical disciplines and proceedings of conferences and symposia of physiological sciences. Besides “Original Research Articles”, the journal also provides columns as “Brief Review”, “Rapid Communication”, “Experimental Technique”, and “Letter to the Editor”. Articles are published in either Chinese or English according to authors’ submission.
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