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Arf GAPs as Regulators of the Actin Cytoskeleton-An Update

机译:ARF差距作为肌动蛋白细胞骨架的监管机构 - 更新

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Arf GTPase-activating proteins (Arf GAPs) control the activity of ADP-ribosylation factors (Arfs) by inducing GTP hydrolysis and participate in a diverse array of cellular functions both through mechanisms that are dependent on and independent of their Arf GAP activity. A number of these functions hinge on the remodeling of actin filaments. Accordingly, some of the effects exerted by Arf GAPs involve proteins known to engage in regulation of the actin dynamics and architecture, such as Rho family proteins and nonmuscle myosin 2. Circular dorsal ruffles (CDRs), podosomes, invadopodia, lamellipodia, stress fibers and focal adhesions are among the actin-based structures regulated by Arf GAPs. Arf GAPs are thus important actors in broad functions like adhesion and motility, as well as the specialized functions of bone resorption, neurite outgrowth, and pathogen internalization by immune cells. Arf GAPs, with their multiple protein-protein interactions, membrane-binding domains and sites for post-translational modification, are good candidates for linking the changes in actin to the membrane. The findings discussed depict a family of proteins with a critical role in regulating actin dynamics to enable proper cell function.
机译:ARF GTPase-活化蛋白(ARF间隙)通过诱导GTP水解来控制ADP-核糖基化因子(ARFS)的活性,并通过依赖于其ARF间隙活性的机制参与各种细胞功能阵列。许多这些功能铰接在肌动蛋白细丝的重塑中。因此,ARF间隙所施加的一些效果涉及已知的蛋白质,用于调节肌动蛋白动态和建筑,例如Rho Family蛋白和非肌肉菌丝素2.圆形背褶(CDRS),Podosomes,Invidopodia,Lamellipodia,应激纤维和焦粘连是由ARF间隙调节的基于肌动蛋白的结构之一。因此,ARF间隙是具有粘附性和动力的广泛功能的重要作用,以及免疫细胞的骨吸收,神经沸石产卵和病原体化的专业功能。 ARF间隙,具有多种蛋白质 - 蛋白质相互作用,膜结合结构域和用于翻译后修饰的部位,是将肌动蛋白的变化连接到膜的良好候选者。所讨论的结果描绘了一种蛋白质家族,在调节肌动蛋白动态方面具有关键作用,以实现适当的细胞功能。

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