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大肿瘤抗原的功能和结构比较分析揭示了不同依赖 Importin α 的核定位信号的进化。

A functional and structural comparative analysis of large tumor antigens reveals evolution of different importin α-dependent nuclear localization signals.

机构信息

School of Dentistry and Medical Sciences, Charles Sturt University, Wagga Wagga, Australia.

Diamond Light Source, Harwell Science and Innovation Campus, Didcot, United Kingdom.

出版信息

Protein Sci. 2024 Feb;33(2):e4876. doi: 10.1002/pro.4876.

Abstract

Nucleocytoplasmic transport regulates the passage of proteins between the nucleus and cytoplasm. In the best characterized pathway, importin (IMP) α bridges cargoes bearing basic, classical nuclear localization signals (cNLSs) to IMPβ1, which mediates transport through the nuclear pore complex. IMPα recognizes three types of cNLSs via two binding sites: the major binding site accommodates monopartite cNLSs, the minor binding site recognizes atypical cNLSs, while bipartite cNLSs simultaneously interact with both major and minor sites. Despite the growing knowledge regarding IMPα-cNLS interactions, our understanding of the evolution of cNLSs is limited. We combined bioinformatic, biochemical, functional, and structural approaches to study this phenomenon, using polyomaviruses (PyVs) large tumor antigens (LTAs) as a model. We characterized functional cNLSs from all human (H)PyV LTAs, located between the LXCXE motif and origin binding domain. Surprisingly, the prototypical SV40 monopartite NLS is not well conserved; HPyV LTA NLSs are extremely heterogenous in terms of structural organization, IMPα isoform binding, and nuclear targeting abilities, thus influencing the nuclear accumulation properties of full-length proteins. While several LTAs possess bipartite cNLSs, merkel cell PyV contains a hybrid bipartite cNLS whose upstream stretch of basic amino acids can function as an atypical cNLS, specifically binding to the IMPα minor site upon deletion of the downstream amino acids after viral integration in the host genome. Therefore, duplication of a monopartite cNLS and subsequent accumulation of point mutations, optimizing interaction with distinct IMPα binding sites, led to the evolution of bipartite and atypical NLSs binding at the minor site.

摘要

核质转运调控蛋白质在细胞核和细胞质之间的传递。在研究最为透彻的途径中,importin(IMP)α 将带有碱性经典核定位信号(cNLS)的货物与 IMPβ1 桥接,后者介导穿过核孔复合物的转运。IMPα 通过两个结合位点识别三种类型的 cNLS:主要结合位点容纳单倍 cNLS,次要结合位点识别非典型 cNLS,而二分 cNLS 同时与主要和次要位点相互作用。尽管我们对 IMPα-cNLS 相互作用的了解不断增加,但我们对 cNLS 进化的理解是有限的。我们结合生物信息学、生物化学、功能和结构方法,使用多瘤病毒(PyV)大肿瘤抗原(LTA)作为模型来研究这一现象。我们鉴定了位于 LXCXE 基序和起源结合域之间的所有人类(H)PyV LTA 的功能性 cNLS。令人惊讶的是,典型的 SV40 单倍 cNLS 并不保守;HPyV LTA NLS 在结构组织、IMPα 同工型结合和核靶向能力方面极其异质,从而影响全长蛋白质的核积累特性。虽然一些 LTA 具有二分 cNLS,但 Merkel 细胞 PyV 含有一种混合的二分 cNLS,其上游碱性氨基酸伸展可作为非典型 cNLS,在病毒整合到宿主基因组后下游氨基酸缺失时特异性结合 IMPα 次要位点。因此,单倍 cNLS 的复制和随后点突变的积累,优化了与不同 IMPα 结合位点的相互作用,导致了二分和非典型 NLS 在次要位点结合的进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/52e7/10807245/c5b069c75cbe/PRO-33-e4876-g003.jpg

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