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三维环境而非NLS 氨基酸序列决定了 RCC1 对输入蛋白α 亚类的特异性。

Three-dimensional context rather than NLS amino acid sequence determines importin α subtype specificity for RCC1.

机构信息

Department of Biochemistry and Molecular Biology, Thomas Jefferson University, 233 South 10th Street, Philadelphia, PA, 19107, USA.

Department of Biochemistry, University of Utah, 15N Medical Drive East, Salt Lake City, UT, 84112-5650, USA.

出版信息

Nat Commun. 2017 Oct 17;8(1):979. doi: 10.1038/s41467-017-01057-7.

Abstract

Active nuclear import of Ran exchange factor RCC1 is mediated by importin α3. This pathway is essential to generate a gradient of RanGTP on chromatin that directs nucleocytoplasmic transport, mitotic spindle assembly and nuclear envelope formation. Here we identify the mechanisms of importin α3 selectivity for RCC1. We find this isoform binds RCC1 with one order of magnitude higher affinity than the generic importin α1, although the two isoforms share an identical NLS-binding groove. Importin α3 uses its greater conformational flexibility to wedge the RCC1 β-propeller flanking the NLS against its lateral surface, preventing steric clashes with its Armadillo-core. Removing the β-propeller, or inserting a linker between NLS and β-propeller, disrupts specificity for importin α3, demonstrating the structural context rather than NLS sequence determines selectivity for isoform 3. We propose importin α3 evolved to recognize topologically complex NLSs that lie next to bulky domains or are masked by quaternary structures.Importin α3 facilitates the nuclear transport of the Ran guanine nucleotide exchange factor RCC1. Here the authors reveal the molecular basis for the selectivity of RCC1 for importin α3 vs the generic importin α1 and discuss the evolution of importin α isoforms.

摘要

Ran 交换因子 RCC1 的主动核输入是由输入蛋白 α3 介导的。该途径对于在染色质上产生 RanGTP 梯度至关重要,该梯度指导核质转运、有丝分裂纺锤体组装和核膜形成。在这里,我们确定了输入蛋白 α3 对 RCC1 选择性的机制。我们发现这种同工型与通用的输入蛋白 α1 相比,与 RCC1 的结合亲和力高一个数量级,尽管这两种同工型共享相同的 NLS 结合槽。输入蛋白 α3 利用其更大的构象灵活性将 RCC1 的β-推进器楔入 NLS 的侧面,防止与其 Armadillo 核心发生空间冲突。去除β-推进器,或在 NLS 和β-推进器之间插入一个接头,会破坏对输入蛋白 α3 的特异性,这表明结构上下文而不是 NLS 序列决定了对同工型 3 的选择性。作者提出,输入蛋白 α3 进化以识别拓扑复杂的 NLS,这些 NLS 位于大体积结构域旁边或被四级结构掩盖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d817/5645467/9eafda59db02/41467_2017_1057_Fig1_HTML.jpg

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