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Importin-β 负调控有丝分裂的多个方面,包括 RANGAP1 向动粒的募集。

Importin-β negatively regulates multiple aspects of mitosis including RANGAP1 recruitment to kinetochores.

机构信息

Institute of Molecular Biology and Pathology, CNR National Research Council, 00185 Rome, Italy.

出版信息

J Cell Biol. 2012 Feb 20;196(4):435-50. doi: 10.1083/jcb.201109104. Epub 2012 Feb 13.

Abstract

Importin-β is the main vector for interphase nuclear protein import and plays roles after nuclear envelope breakdown. Here we show that importin-β regulates multiple aspects of mitosis via distinct domains that interact with different classes of proteins in human cells. The C-terminal region (which binds importin-α) inhibits mitotic spindle pole formation. The central region (harboring nucleoporin-binding sites) regulates microtubule dynamic functions and interaction with kinetochores. Importin-β interacts through this region with NUP358/RANBP2, which in turn binds SUMO-conjugated RANGAP1 in nuclear pores. We show that this interaction continues after nuclear pore disassembly. Overexpression of importin-β, or of the nucleoporin-binding region, inhibited RANGAP1 recruitment to mitotic kinetochores, an event that is known to require microtubule attachment and the exportin CRM1. Co-expressing either importin-β-interacting RANBP2 fragments, or CRM1, restored RANGAP1 to kinetochores and rescued importin-β-dependent mitotic dynamic defects. These results reveal previously unrecognized importin-β functions at kinetochores exerted via RANBP2 and opposed by CRM1.

摘要

输入蛋白-β是核质蛋白转运的主要载体,在核膜崩解后发挥作用。在这里,我们发现输入蛋白-β通过与人类细胞中不同类别的蛋白质相互作用的不同结构域,调节有丝分裂的多个方面。C 末端区域(与输入蛋白-α结合)抑制有丝分裂纺锤体极的形成。中央区域(含有核孔蛋白结合位点)调节微管动态功能和与动粒的相互作用。输入蛋白-β通过该区域与 NUP358/RANBP2 相互作用,RANBP2 反过来又与核孔中的 SUMO 缀合的 RANGAP1 结合。我们表明,这种相互作用在核孔解体后仍在继续。输入蛋白-β或核孔蛋白结合区的过表达抑制了 RANGAP1 向有丝分裂动粒的募集,已知该事件需要微管附着和输出蛋白 CRM1。共表达输入蛋白-β相互作用的 RANBP2 片段或 CRM1 可将 RANGAP1 重新募集到动粒,并挽救输入蛋白-β依赖性有丝分裂动态缺陷。这些结果揭示了在动粒处以前未被识别的输入蛋白-β功能,该功能是通过 RANBP2 发挥的,而 CRM1 则与之相反。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68b1/3283988/8d2069542abc/JCB_201109104_Fig1.jpg

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