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DAAM1 是一种在细胞迁移过程中重新定向中心体所必需的formin。

DAAM1 is a formin required for centrosome re-orientation during cell migration.

机构信息

Rho GTPases in Stem Cells Group, Institute of Medical Biology Agency for Science, Technology and Research, Singapore, Singapore.

出版信息

PLoS One. 2010 Sep 29;5(9):e13064. doi: 10.1371/journal.pone.0013064.

Abstract

BACKGROUND

Disheveled-associated activator of morphogenesis 1 (DAAM1) is a formin acting downstream of Wnt signaling that is important for planar cell polarity. It has been shown to promote proper cell polarization during embryonic development in both Xenopus and Drosophila. Importantly, DAAM1 binds to Disheveled (Dvl) and thus functions downstream of the Frizzled receptors. Little is known of how DAAM1 is localized and functions in mammalian cells. We investigate here how DAAM1 affects migration and polarization of cultured cells and conclude that it plays a key role in centrosome polarity.

METHODOLOGY/PRINCIPAL FINDINGS: Using a specific antibody to DAAM1, we find that the protein localizes to the acto-myosin system and co-localizes with ventral myosin IIB-containing actin stress fibers. These fibers are particularly evident in the sub-nuclear region. An N-terminal region of DAAM1 is responsible for this targeting and the DAAM1(1-440) protein can interact with myosin IIB fibers independently of either F-actin or RhoA binding. We also demonstrate that DAAM1 depletion inhibits Golgi reorientation in wound healing assays. Wound-edge cells exhibit multiple protrusions characteristic of unpolarized cell migration. Finally, in U2OS cells lines stably expressing DAAM1, we observe an enhanced myosin IIB stress fiber network which opposes cell migration.

CONCLUSIONS/SIGNIFICANCE: This work highlights the importance of DAAM1 in processes underlying cell polarity and suggests that it acts in part by affecting the function of acto-myosin IIB system. It also emphasizes the importance of the N-terminal half of DAAM1. DAAM1 depletion strongly blocks centrosomal re-polarization, supporting the concept that DAAM1 signaling cooperates with the established Cdc42 associated polarity complex. These findings are also consistent with the observation that ablation of myosin IIB but not myosin IIA results in polarity defects downstream of Wnt signaling. The structure-function analysis of DAAM1 in cultured cells parallels more complex morphological events in the developing embryo.

摘要

背景

形态发生激活因子 1(DAAM1)是一种肌动蛋白形成蛋白,作为 Wnt 信号的下游因子,在平面细胞极性中起重要作用。已证明它在 Xenopus 和 Drosophila 的胚胎发育过程中促进细胞正确极化。重要的是,DAAM1 与 Disheveled(Dvl)结合,因此作为 Frizzled 受体的下游发挥作用。目前尚不清楚 DAAM1 如何在哺乳动物细胞中定位和发挥作用。我们在此研究 DAAM1 如何影响培养细胞的迁移和极化,并得出结论,它在中心体极性中起关键作用。

方法/主要发现:使用针对 DAAM1 的特异性抗体,我们发现该蛋白定位于肌动球蛋白系统,并与包含腹侧肌球蛋白 IIB 的肌动蛋白应力纤维共定位。这些纤维在核下区域尤为明显。DAAM1 的 N 端区域负责这种靶向,并且 DAAM1(1-440)蛋白可以与肌球蛋白 IIB 纤维相互作用,而不依赖于 F- 肌动蛋白或 RhoA 结合。我们还证明 DAAM1 耗竭抑制了伤口愈合测定中的高尔基体重定向。伤口边缘细胞表现出多个突起,这是无极化细胞迁移的特征。最后,在稳定表达 DAAM1 的 U2OS 细胞系中,我们观察到增强的肌球蛋白 IIB 应力纤维网络,这与细胞迁移相反。

结论/意义:这项工作强调了 DAAM1 在细胞极性形成过程中的重要性,并表明它部分通过影响肌动球蛋白 IIB 系统的功能来发挥作用。它还强调了 DAAM1 N 端一半的重要性。DAAM1 耗竭强烈阻止中心体再极化,支持 DAAM1 信号与已建立的 Cdc42 相关极性复合物合作的概念。这些发现也与肌球蛋白 IIB 而非肌球蛋白 IIA 的消融导致 Wnt 信号下游的极性缺陷的观察结果一致。在培养细胞中的 DAAM1 的结构-功能分析与发育中的胚胎中更复杂的形态事件平行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/783a/2947498/a681c7e234c7/pone.0013064.g001.jpg

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