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本文引用的文献

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A deep proteomics perspective on CRM1-mediated nuclear export and nucleocytoplasmic partitioning.关于CRM1介导的核输出和核质分配的深度蛋白质组学视角。
Elife. 2015 Dec 17;4:e11466. doi: 10.7554/eLife.11466.
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Structural Biology and Regulation of Protein Import into the Nucleus.蛋白质入核的结构生物学与调控
J Mol Biol. 2016 May 22;428(10 Pt A):2060-90. doi: 10.1016/j.jmb.2015.10.023. Epub 2015 Oct 30.
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Mechanism and regulation of cytoplasmic dynein.胞质动力蛋白的机制与调控
Annu Rev Cell Dev Biol. 2015;31:83-108. doi: 10.1146/annurev-cellbio-100814-125438. Epub 2015 Sep 30.
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Nuclear Localization of the DNA Repair Scaffold XRCC1: Uncovering the Functional Role of a Bipartite NLS.DNA修复支架蛋白XRCC1的核定位:揭示双分型核定位信号的功能作用
Sci Rep. 2015 Aug 25;5:13405. doi: 10.1038/srep13405.
5
Mitotic redistribution of the mitochondrial network by Miro and Cenp-F.由米罗蛋白和着丝粒蛋白F介导的线粒体网络的有丝分裂重分布。
Nat Commun. 2015 Aug 11;6:8015. doi: 10.1038/ncomms9015.
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Cdk1 Activates Pre-mitotic Nuclear Envelope Dynein Recruitment and Apical Nuclear Migration in Neural Stem Cells.细胞周期蛋白依赖性激酶1激活神经干细胞有丝分裂前核膜动力蛋白招募及顶端核迁移
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What next-generation sequencing (NGS) technology has enabled us to learn about primary autosomal recessive microcephaly (MCPH).下一代测序(NGS)技术使我们能够了解原发性常染色体隐性小头畸形(MCPH)。
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8
The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes.动粒蛋白CENPF在人类纤毛病和小头畸形表型中发生突变。
J Med Genet. 2015 Mar;52(3):147-56. doi: 10.1136/jmedgenet-2014-102691. Epub 2015 Jan 6.
9
LocNES: a computational tool for locating classical NESs in CRM1 cargo proteins.LocNES:一种用于在CRM1货物蛋白中定位经典核输出信号的计算工具。
Bioinformatics. 2015 May 1;31(9):1357-65. doi: 10.1093/bioinformatics/btu826. Epub 2014 Dec 15.
10
Dynamics of re-constitution of the human nuclear proteome after cell division is regulated by NLS-adjacent phosphorylation.细胞分裂后人类细胞核蛋白质组的重新构建动态受核定位信号相邻区域磷酸化的调控。
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动粒蛋白 CENP-F 的 G2 期特异性核输出机制。

Mechanism for G2 phase-specific nuclear export of the kinetochore protein CENP-F.

机构信息

a Department of Chemistry , State University of New York at Binghamton , New York , NY , USA.

b Laboratory of Cell Biology , The Rockefeller University , New York , NY , USA.

出版信息

Cell Cycle. 2017 Aug 3;16(15):1414-1429. doi: 10.1080/15384101.2017.1338218. Epub 2017 Jul 19.

DOI:10.1080/15384101.2017.1338218
PMID:28723232
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5553399/
Abstract

Centromere protein F (CENP-F) is a component of the kinetochore and a regulator of cell cycle progression. CENP-F recruits the dynein transport machinery and orchestrates several cell cycle-specific transport events, including transport of the nucleus, mitochondria and chromosomes. A key regulatory step for several of these functions is likely the G2 phase-specific export of CENP-F from the nucleus to the cytosol, where the cytoplasmic dynein transport machinery resides; however, the molecular mechanism of this process is elusive. Here, we have identified 3 phosphorylation sites within the bipartite classical nuclear localization signal (cNLS) of CENP-F. These sites are specific for cyclin-dependent kinase 1 (Cdk1), which is active in G2 phase. Phosphomimetic mutations of these residues strongly diminish the interaction of the CENP-F cNLS with its nuclear transport receptor karyopherin α. These mutations also diminish nuclear localization of the CENP-F cNLS in cells. Notably, the cNLS is phosphorylated in the -1 position, which is important to orient the adjacent major motif for binding into its pocket on karyopherin α. We propose that localization of CENP-F is regulated by a cNLS, and a nuclear export pathway, resulting in nuclear localization during most of interphase. In G2 phase, the cNLS is weakened by phosphorylation through Cdk1, likely resulting in nuclear export of CENP-F via the still active nuclear export pathway. Once CENP-F resides in the cytosol, it can engage in pathways that are important for cell cycle progression, kinetochore assembly and the faithful segregation of chromosomes into daughter cells.

摘要

着丝粒蛋白 F(CENP-F)是动粒的一个组成部分,也是细胞周期进程的调节剂。CENP-F 招募了动力蛋白运输机制,并协调了几个细胞周期特异性的运输事件,包括核、线粒体和染色体的运输。几个这些功能的关键调节步骤可能是 CENP-F 从核到细胞质的 G2 期特异性输出,细胞质动力蛋白运输机制就存在于细胞质中;然而,这个过程的分子机制还不清楚。在这里,我们已经确定了 CENP-F 的二分经典核定位信号(cNLS)内的 3 个磷酸化位点。这些位点是特定于周期蛋白依赖性激酶 1(Cdk1)的,Cdk1 在 G2 期活跃。这些残基的磷酸模拟突变强烈削弱了 CENP-F cNLS 与其核转运受体核孔蛋白 α 的相互作用。这些突变也减少了 CENP-F cNLS 在细胞中的核定位。值得注意的是,cNLS 在-1 位被磷酸化,这对于将相邻的主要基序定向到核孔蛋白 α 的口袋中很重要。我们提出,CENP-F 的定位受 cNLS 和核输出途径调节,导致在大多数间期中核定位。在 G2 期,cNLS 通过 Cdk1 的磷酸化而减弱,可能导致 CENP-F 通过仍活跃的核输出途径进行核输出。一旦 CENP-F 位于细胞质中,它就可以参与对细胞周期进程、动粒组装和染色体准确分配到子细胞中很重要的途径。