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RANBP2 的进化与人类疾病。

RANBP2 evolution and human disease.

机构信息

Institut de Recherche en Infectiologie de Montpellier (IRIM), University of Montpellier, France.

Centre International de Recherche en Infectiologie (CIRI), Inserm U1111, UCBL1, CNRS UMR 5308, ENS de Lyon, Université de Lyon, France.

出版信息

FEBS Lett. 2023 Oct;597(20):2519-2533. doi: 10.1002/1873-3468.14749. Epub 2023 Oct 15.

Abstract

Ran-binding protein 2 (RANBP2)/Nup358 is a nucleoporin and a key component of the nuclear pore complex. Through its multiple functions (e.g., SUMOylation, regulation of nucleocytoplasmic transport) and subcellular localizations (e.g., at the nuclear envelope, kinetochores, annulate lamellae), it is involved in many cellular processes. RANBP2 dysregulation or mutation leads to the development of human pathologies, such as acute necrotizing encephalopathy 1, cancer, neurodegenerative diseases, and it is also involved in viral infections. The chromosomal region containing the RANBP2 gene is highly dynamic, with high structural variation and recombination events that led to the appearance of a gene family called RANBP2 and GCC2 Protein Domains (RGPD), with multiple gene loss/duplication events during ape evolution. Although RGPD homoplasy and maintenance during evolution suggest they might confer an advantage to their hosts, their functions are still unknown and understudied. In this review, we discuss the appearance and importance of RANBP2 in metazoans and its function-related pathologies, caused by an alteration of its expression levels (through promotor activity, post-transcriptional, or post-translational modifications), its localization, or genetic mutations.

摘要

Ran 结合蛋白 2(RANBP2)/Nup358 是核孔复合体的核孔蛋白和关键组成部分。通过其多种功能(例如,SUMO 化、核质转运的调节)和亚细胞定位(例如,核膜、动粒、环状层板),它参与许多细胞过程。RANBP2 的失调或突变导致人类病理学的发展,如急性坏死性脑病 1、癌症、神经退行性疾病,它也与病毒感染有关。包含 RANBP2 基因的染色体区域高度动态,具有高结构变异和重组事件,导致了一个称为 RANBP2 和 GCC2 蛋白结构域(RGPD)的基因家族的出现,在类人猿进化过程中发生了多次基因缺失/复制事件。尽管 RGPD 的同源性和进化过程中的维持表明它们可能对其宿主有利,但它们的功能仍然未知且研究不足。在这篇综述中,我们讨论了 RANBP2 在后生动物中的出现和重要性及其与其功能相关的病理学,这些病理学是由其表达水平(通过启动子活性、转录后或翻译后修饰)、定位或基因突变的改变引起的。

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