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本文引用的文献

1
The regulation of TGFbeta signal transduction.转化生长因子β信号转导的调控
Development. 2009 Nov;136(22):3699-714. doi: 10.1242/dev.030338.
2
Tgf-beta superfamily signaling in embryonic development and homeostasis.胚胎发育与内环境稳定中的转化生长因子-β超家族信号传导
Dev Cell. 2009 Mar;16(3):329-43. doi: 10.1016/j.devcel.2009.02.012.
3
Mutation in nuclear pore component NUP155 leads to atrial fibrillation and early sudden cardiac death.核孔复合体成分NUP155的突变导致心房颤动和早期心源性猝死。
Cell. 2008 Dec 12;135(6):1017-27. doi: 10.1016/j.cell.2008.10.022.
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Structure, dynamics and function of nuclear pore complexes.核孔复合体的结构、动力学与功能
Trends Cell Biol. 2008 Oct;18(10):456-66. doi: 10.1016/j.tcb.2008.07.009. Epub 2008 Sep 9.
5
Nuclear pore composition regulates neural stem/progenitor cell differentiation in the mouse embryo.核孔组成调节小鼠胚胎中的神经干/祖细胞分化。
Dev Cell. 2008 Jun;14(6):831-42. doi: 10.1016/j.devcel.2008.03.011.
6
Preferential utilization of Imp7/8 in nuclear import of Smads.在Smads的核输入中对Imp7/8的优先利用。
J Biol Chem. 2008 Aug 15;283(33):22867-74. doi: 10.1074/jbc.M801320200. Epub 2008 Jun 2.
7
Mathematical modeling identifies Smad nucleocytoplasmic shuttling as a dynamic signal-interpreting system.数学建模将Smad核质穿梭识别为一种动态信号解读系统。
Proc Natl Acad Sci U S A. 2008 May 6;105(18):6608-13. doi: 10.1073/pnas.0710134105. Epub 2008 Apr 28.
8
Nup53 is required for nuclear envelope and nuclear pore complex assembly.核膜和核孔复合体组装需要Nup53。
Mol Biol Cell. 2008 Apr;19(4):1753-62. doi: 10.1091/mbc.e07-08-0820. Epub 2008 Feb 6.
9
Crossing the nuclear envelope: hierarchical regulation of nucleocytoplasmic transport.穿越核膜:核质运输的分级调控
Science. 2007 Nov 30;318(5855):1412-6. doi: 10.1126/science.1142204.
10
The molecular architecture of the nuclear pore complex.核孔复合体的分子结构
Nature. 2007 Nov 29;450(7170):695-701. doi: 10.1038/nature06405.

特定核孔蛋白对于 Smad 入核转运的需求。

Specific nucleoporin requirement for Smad nuclear translocation.

机构信息

Program in Molecular Medicine, University of Massachusetts Medical School, 373 Plantation Street, Worcester, MA 01605, USA.

出版信息

Mol Cell Biol. 2010 Aug;30(16):4022-34. doi: 10.1128/MCB.00124-10. Epub 2010 Jun 14.

DOI:10.1128/MCB.00124-10
PMID:20547758
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2916443/
Abstract

Cytoplasm-to-nucleus translocation of Smad is a fundamental step in transforming growth factor beta (TGF-beta) signal transduction. Here we identify a subset of nucleoporins that, in conjunction with Msk (Drosophila Imp7/8), specifically mediate activation-induced nuclear translocation of MAD (Drosophila Smad1) but not the constitutive import of proteins harboring a classic nuclear localization signal (cNLS) or the spontaneous nuclear import of Medea (Drosophila Smad4). Surprisingly, many of these nucleoporins, including Sec13, Nup75, Nup93, and Nup205, are scaffold nucleoporins considered important for the overall integrity of the nuclear pore complex (NPC) but not known to have cargo-specific functions. We demonstrate that the roles of these nucleoporins in supporting Smad nuclear import are separate from their previously assigned functions in NPC assembly. Furthermore, we uncovered novel pathway-specific functions of Sec13 and Nup93; both Sec13 and Nup93 are able to preferentially interact with the phosphorylated/activated form of MAD, and Nup93 acts to recruit the importin Msk to the nuclear periphery. These findings, together with the observation that Sec13 and Nup93 could interact directly with Msk, suggest their direct involvement in the nuclear import of MAD. Thus, we have delineated the nucleoporin requirement of MAD nuclear import, reflecting a unique trans-NPC mechanism.

摘要

细胞质到细胞核中转位是转化生长因子β(TGF-β)信号转导的基本步骤。在这里,我们确定了一组核孔蛋白亚基,它们与 Msk(果蝇 Imp7/8)一起,特异性地介导 MAD(果蝇 Smad1)的激活诱导核转位,但不介导含有经典核定位信号(cNLS)的蛋白质的组成性导入,也不介导 Medea(果蝇 Smad4)的自发核导入。令人惊讶的是,这些核孔蛋白中的许多,包括 Sec13、Nup75、Nup93 和 Nup205,都是支架核孔蛋白,被认为对核孔复合物(NPC)的整体完整性很重要,但没有已知的货物特异性功能。我们证明,这些核孔蛋白在支持 Smad 核导入中的作用与其在 NPC 组装中的先前分配功能是分开的。此外,我们揭示了 Sec13 和 Nup93 的新的途径特异性功能;Sec13 和 Nup93 都能够优先与磷酸化/激活形式的 MAD 相互作用,并且 Nup93 可以募集导入蛋白 Msk 到核周。这些发现,加上观察到 Sec13 和 Nup93 可以直接与 Msk 相互作用,表明它们直接参与了 MAD 的核导入。因此,我们已经描绘了 MAD 核导入的核孔蛋白需求,反映了一种独特的跨 NPC 机制。