Hannemann Sebastian, Madrid Ricardo, Stastna Jana, Kitzing Thomas, Gasteier Judith, Schönichen André, Bouchet Jerome, Jimenez Alberto, Geyer Matthias, Grosse Robert, Benichou Serge, Fackler Oliver T
Department of Virology, University of Heidelberg, Im Neuenheimer Feld 324, 69120 Heidelberg, Germany.
Institut Cochin, Université Paris Descartes, CNRS (UMR 8104), 75014 Paris, France; INSERM U567, 75014 Paris, France; Centro de Biología Molecular "Severo Ochoa," Universidad Autónoma de Madrid and Consejo Superior de Investigaciones Científicas, Cantoblanco, 28049 Madrid, Spain.
J Biol Chem. 2008 Oct 10;283(41):27891-27903. doi: 10.1074/jbc.M801800200. Epub 2008 Aug 11.
Diaphanous-related formins (DRFs) mediate GTPase-triggered actin rearrangements to regulate central cellular processes, such as cell motility and cytokinesis. The DRF FHOD1 interacts with the Rho-GTPase Rac1 and mediates formation of actin stress fibers in its deregulated form; the physiologically relevant activities and molecular mechanisms of endogenous FHOD1, however, are still unknown. Here we report that FHOD1 physically associates via the N-terminal part of its FH2 domain with the central domain of ROCK1. Although FHOD1 does not affect the kinase activity of ROCK1, the DRF is an efficient substrate for phosphorylation by ROCK1. Co-expression of FHOD1 and ROCK1 results in the generation of nonapoptotic plasma membrane (PM) blebs, to which the DRF is efficiently recruited. Blebbing induced by FHOD1 and ROCK1 depends on F-actin integrity, the Rho-ROCK cascade, and Src activity and is reminiscent of the recently described PM blebs triggered by expression of Src homology 4 (SH4) domain PM targeting signals. Consistently, endogenous FHOD1 is required in SH4 domain expressing cells for efficient PM blebbing and rounded cell morphology in two-dimensional cultures or three-dimensional matrices, respectively. Efficient association of FHOD1 with ROCK1, as well as recruitment of the DRF to blebs, depends on Src activity, suggesting that the functional interaction between both proteins is regulated by Src. These results define a role for endogenous FHOD1 in SH4 domain-induced blebbing and suggest that its activity is regulated by ROCK1 in a Src-dependent manner.
Diaphanous相关的formin(DRF)介导GTP酶触发的肌动蛋白重排,以调节诸如细胞运动和胞质分裂等核心细胞过程。DRF FHOD1与Rho-GTP酶Rac1相互作用,并以其失调形式介导肌动蛋白应力纤维的形成;然而,内源性FHOD1的生理相关活性和分子机制仍不清楚。在这里,我们报告FHOD1通过其FH2结构域的N端部分与ROCK1的中央结构域发生物理关联。尽管FHOD1不影响ROCK1的激酶活性,但该DRF是ROCK1磷酸化的有效底物。FHOD1和ROCK1的共表达导致非凋亡性质膜(PM)气泡的产生,DRF可有效募集到这些气泡上。FHOD1和ROCK1诱导的气泡形成取决于F-肌动蛋白的完整性、Rho-ROCK级联反应和Src活性,这让人联想到最近描述的由Src同源4(SH4)结构域质膜靶向信号的表达触发的PM气泡。一致地,在二维培养或三维基质中,表达SH4结构域的细胞中内源性FHOD1分别是有效PM气泡形成和圆形细胞形态所必需的。FHOD1与ROCK1的有效结合以及DRF募集到气泡上均取决于Src活性,这表明这两种蛋白质之间的功能相互作用受Src调节。这些结果确定了内源性FHOD1在SH4结构域诱导的气泡形成中的作用,并表明其活性以Src依赖的方式受ROCK1调节。