NLS公司
核定位序列
生物
核运输
细胞生物学
解码
结合位点
病毒蛋白
衣壳
生物素化
计算生物学
序列比对
烟草
蛋白质结构域
核磷蛋白
血浆蛋白结合
蛋白质结构
C端
病毒学
生物化学
遗传学
共识序列
植物病毒
异源的
肽序列
调节器
生物信息学
病毒复制
作者
Yunlong Liu,Ziheng Wang,Yanjing Zhang,Xiaoling Wang,Shirong Wei,Meng Yang,Yongliang Zhang,Dawei Li,Xiaoxuan Qi,Xiaofei Zhao,Zhongzhou Chen
出处
期刊:Plant Journal
[Wiley]
日期:2026-07-01
卷期号:127 (2): e71055-e71055
摘要
Importin-α mediates nuclear protein import by recognizing nuclear localization signals (NLSs) and is frequently exploited by plant viruses to access the host nucleus. How plant importin-α maintains selectivity for endogenous cargos while accommodating diverse viral NLSs remains unclear. Here, we report the 1.88 Å crystal structure of Nicotiana benthamiana importin-α1 lacking the autoinhibitory IBB domain (NbImpα1ΔIBB), and its complexes with three plant viral NLSs: BBSV CP, CMV-fny 2b, and BBSV p7a, respectively. NbImpα1 adopts the canonical armadillo repeat-based superhelical fold with conserved major and minor NLS-binding sites. All viral NLS peptides bind in a 2:1 stoichiometry and share a common orientation along the central groove (C to N direction), but exhibit distinct interaction strategies. BBSV CP and CMV-fny 2b contain bipartite NLSs with reversed site usage, whereas BBSV p7a employs a monopartite NLS with repeated basic motifs to occupy both sites. Structural and functional analyses demonstrate that NbImpα1 decodes the three-dimensional spatial topology of basic residues rather than primary NLS sequences. The major binding site mediates high-specificity initial anchoring, while the minor binding site provides plasticity for diverse NLS recognition. This dual-site, topology-based model explains selective yet flexible nuclear import and viral adaptation to plant constraints.
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