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Diversity from similarity: cellular strategies for assigning particular identities to actin filaments and networks

机译:来自相似性的多样性:用于将特定身份分配给actin细丝和网络的细胞策略

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摘要

The actin cytoskeleton has the particularity of being assembled into many functionally distinct filamentous networks from a common reservoir of monomeric actin. Each of these networks has its own geometrical, dynamical and mechanical properties, because they are capable of recruiting specific families of actin-binding proteins (ABPs), while excluding the others. This review discusses our current understanding of the underlying molecular mechanisms that cells have developed over the course of evolution to segregate ABPs to appropriate actin networks. Segregation of ABPs requires the ability to distinguish actin networks as different substrates for ABPs, which is regulated in three different ways: (1) by the geometrical organization of actin filaments within networks, which promotes or inhibits the accumulation of ABPs; (2) by the identity of the networks' filaments, which results from the decoration of actin filaments with additional proteins such as tropomyosin, from the use of different actin isoforms or from covalent modifications of actin; (3) by the existence of collaborative or competitive binding to actin filaments between two or multiple ABPs. This review highlights that all these effects need to be taken into account to understand the proper localization of ABPs in cells, and discusses what remains to be understood in this field of research.
机译:肌动蛋白细胞骨架具有从单体肌动蛋白的常见储层组装成许多功能上不同的丝网网络的特殊性。这些网络中的每一个都具有其自身的几何,动态和机械性能,因为它们能够募集特定的肌动蛋白结合蛋白(ABP)的族,同时排除其他组织。本次审查讨论了我们目前对细胞在进化过程中发展的潜在分子机制的理解,以使ABPS分离到适当的Actin网络。 ABP的分离需要能够将肌动蛋白网络区分为ABP的不同基材,这以三种不同的方式调节:(1)通过网络内的肌动蛋白细丝的几何组织,这促进或抑制了ABP的积累; (2)通过网络的身份,这是由肌动蛋白长丝的装饰导致具有额外的蛋白质如卓越蛋白酶,从使用不同的肌动蛋白同种型或来自actin的共价修饰; (3)通过在两种或多个ABPS之间存在协作或竞争结合,致动蛋白细胞。本综述强调,所有这些效果都需要考虑到了解细胞中ABPS的适当本地化,并讨论该研究领域的遗体仍然应该理解。

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