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本文引用的文献

1
Positive feedback between Dia1, LARG, and RhoA regulates cell morphology and invasion.Dia1、LARG和RhoA之间的正反馈调节细胞形态和侵袭。
Genes Dev. 2007 Jun 15;21(12):1478-83. doi: 10.1101/gad.424807.
2
Mechanism and function of formins in the control of actin assembly.formin蛋白在肌动蛋白组装调控中的机制与功能
Annu Rev Biochem. 2007;76:593-627. doi: 10.1146/annurev.biochem.75.103004.142647.
3
Autoinhibition regulates cellular localization and actin assembly activity of the diaphanous-related formins FRLalpha and mDia1.自身抑制调节与透明质酸相关的formin蛋白FRLα和mDia1的细胞定位和肌动蛋白组装活性。
J Cell Biol. 2006 Aug 28;174(5):701-13. doi: 10.1083/jcb.200605006.
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Staying in shape with formins.借助formin蛋白保持良好状态。
Dev Cell. 2006 Jun;10(6):693-706. doi: 10.1016/j.devcel.2006.05.001.
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Identification of novel mutations in ACT1 and SLA2 that suppress the actin-cable-overproducing phenotype caused by overexpression of a dominant active form of Bni1p in Saccharomyces cerevisiae.在酿酒酵母中鉴定ACT1和SLA2的新突变,这些突变可抑制由Bni1p显性活性形式过表达引起的肌动蛋白电缆过度产生表型。
Genetics. 2006 Jun;173(2):527-39. doi: 10.1534/genetics.105.055210. Epub 2006 Mar 17.
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Signaling mechanisms regulating endothelial permeability.调节内皮细胞通透性的信号传导机制。
Physiol Rev. 2006 Jan;86(1):279-367. doi: 10.1152/physrev.00012.2005.
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Molecular details of formin-mediated actin assembly.formin介导的肌动蛋白组装的分子细节。
Curr Opin Cell Biol. 2006 Feb;18(1):11-7. doi: 10.1016/j.ceb.2005.12.011. Epub 2005 Dec 20.
8
Biochemical characterization of the diaphanous autoregulatory interaction in the formin homology protein FHOD1.formin同源蛋白FHOD1中透明自调节相互作用的生化特性分析
J Biol Chem. 2006 Feb 24;281(8):5084-93. doi: 10.1074/jbc.M509226200. Epub 2005 Dec 16.
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The regulation of mDia1 by autoinhibition and its release by Rho*GTP.mDia1通过自身抑制的调节及其由Rho*GTP引发的释放。
EMBO J. 2005 Dec 7;24(23):4176-87. doi: 10.1038/sj.emboj.7600879. Epub 2005 Nov 17.
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Formin proteins: a domain-based approach.formin蛋白:一种基于结构域的方法。
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哺乳动物的formin FHOD1通过ROCK磷酸化被激活,并在内皮细胞中介导凝血酶诱导的应力纤维形成。

The mammalian formin FHOD1 is activated through phosphorylation by ROCK and mediates thrombin-induced stress fibre formation in endothelial cells.

作者信息

Takeya Ryu, Taniguchi Kenichiro, Narumiya Shuh, Sumimoto Hideki

机构信息

Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.

出版信息

EMBO J. 2008 Feb 20;27(4):618-28. doi: 10.1038/emboj.2008.7. Epub 2008 Jan 31.

DOI:10.1038/emboj.2008.7
PMID:18239683
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2262041/
Abstract

Formin-family proteins, in the active state, form actin-based structures such as stress fibres. Their activation mechanisms, however, are largely unknown except that mDia and its closely related formins can be activated by direct binding of the small GTPase Rho or Cdc42. Here we show that the Rho-dependent protein kinase ROCK phosphorylates the C-terminal residues Ser1131, Ser1137, and Thr1141 of formin homology domain protein 1 (FHOD1), a major endothelial formin that is normally autoinhibited by intramolecular interaction between the N- and C-terminal regions. Phosphorylation of FHOD1 at the three residues fully disrupts the autoinhibitory interaction, which culminates in formation of stress fibres. We also demonstrate that, in vascular endothelial cells, thrombin, a vasoactive substance leading to Rho activation, elicits both FHOD1 phosphorylation and stress fibre formation in a ROCK-dependent manner, and that FHOD1 depletion by RNA interference impairs thrombin-induced stress fibre formation. Based on these findings we propose a novel mechanism for activation of formin-family proteins: ROCK, activated by G protein-coupled receptor ligands such as thrombin, directly phosphorylates FHOD1 at the C-terminal region, which renders this formin in the active form, leading to stress fibre formation.

摘要

在活性状态下,formin家族蛋白会形成基于肌动蛋白的结构,如应力纤维。然而,除了mDia及其密切相关的formin蛋白可被小GTP酶Rho或Cdc42直接结合激活外,它们的激活机制在很大程度上尚不清楚。在此,我们表明,Rho依赖性蛋白激酶ROCK可磷酸化formin同源结构域蛋白1(FHOD1)的C末端残基Ser1131、Ser1137和Thr1141,FHOD1是一种主要的内皮formin蛋白,通常因N末端和C末端区域之间的分子内相互作用而处于自抑制状态。FHOD1在这三个残基处的磷酸化完全破坏了自抑制相互作用,最终导致应力纤维的形成。我们还证明,在血管内皮细胞中,凝血酶作为一种导致Rho激活的血管活性物质,以ROCK依赖性方式引发FHOD1磷酸化和应力纤维形成,并且RNA干扰介导的FHOD1缺失会损害凝血酶诱导的应力纤维形成。基于这些发现,我们提出了一种formin家族蛋白激活的新机制:由凝血酶等G蛋白偶联受体配体激活的ROCK直接磷酸化FHOD1的C末端区域,使该formin蛋白处于活性形式,从而导致应力纤维形成。