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Control of Formin Distribution and Actin Cable Assembly by the E3 Ubiquitin Ligases Dma1 and Dma2

机译:E3泛素里加斯Dma1和Dma2控制Formin分布和肌动蛋白电缆装配

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摘要

Formins are widespread actin-polymerizing proteins that play pivotal roles in a number of processes, such as cell polarity, morphogenesis, cytokinesis, and cell migration. In agreement with their crucial function, formins are prone to a variety of regulatory mechanisms that include autoinhibition, post-translational modifications, and interaction with formin modulators. Furthermore, activation and function of formins is intimately linked to their ability to interact with membranes. In the budding yeast Saccharomyces cerevisiae, the two formins and play both separate and overlapping functions in the organization of the actin cytoskeleton. In addition, they are controlled by both common and different regulatory mechanisms. Here we show that proper localization of both formins requires the redundant E3 ubiquitin ligases and , which were previously involved in spindle positioning and septin organization. In double mutants, formin distribution at polarity sites is impaired, thus causing defects in the organization of the actin cable network and hypersensitivity to the actin depolymerizer latrunculin B. Expression of a hyperactive variant of (-V360D) rescues these defects and partially restores proper spindle positioning in the mutant, suggesting that the failure of mutant cells to position the spindle is partly due to faulty formin activity. Strikingly, / interact physically with both formins, while their ubiquitin-ligase activity is required for formin function and polarized localization. Thus, ubiquitylation of formin or a formin interactor(s) could promote formin binding to membrane and its ability to nucleate actin. Altogether, our data highlight a novel level of formin regulation that further expands our knowledge of the complex and multilayered controls of these key cytoskeleton organizers.
机译:福尔马林是广泛的肌动蛋白聚合蛋白,在许多过程中起关键作用,例如细胞极性,形态发生,胞质分裂和细胞迁移。与它们的关键功能相一致,formins倾向于多种调节机制,包括自动抑制,翻译后修饰以及与formin调节剂的相互作用。此外,福尔马林的活化和功能与其与膜相互作用的能力密切相关。在出芽的酿酒酵母中,这两个formins在肌动蛋白细胞骨架的组织中起着分离和重叠的作用。此外,它们受到通用和不同监管机制的控制。在这里,我们显示两个formins的正确定位都需要多余的E3泛素连接酶和,这些酶以前参与纺锤体定位和septin的组织。在双突变体中,极性位点上的formin分布受到损害,从而导致肌动蛋白电缆网络的组织缺陷和对肌动蛋白解聚剂拉特朗库林B的超敏性。(-V360D)过度活跃的变体的表达挽救了这些缺陷,并部分恢复了正常的纺锤体在突变体中的定位,表明突变细胞不能定位纺锤体的部分原因是因为有缺陷的formin活性。令人惊讶的是,它们与两种福尔马林都发生了物理相互作用,而它们的泛素连接酶活性是福明功能和极化定位所必需的。因此,formin或formin相互作用物的泛素化可以促进formin与膜的结合及其使肌动蛋白成核的能力。总而言之,我们的数据突显了新的水平的福尔明调节,进一步扩展了我们对这些关键细胞骨架组织者的复杂和多层控制的认识。

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