Arf and Rab proteins, members of small GTPases superfamily, localize to specific subcellular compartments and regulate intracellular trafficking. To carry out their cellular functions, Arfs/Rabs interact with numerous and structurally diverse effector proteins. Over the years, a number of Arf/Rab:effector complexes have been crystallized and their structures reveal shared binding modes including α-helical packing, β-β complementation, and heterotetrameric assemblies. We review available structural information and provide a framework for in-depth analysis of complexes. The unifying features that we identify are organized into a classification scheme for different modes of Arf/Rab:effector interactions, which includes "all-α-helical," "mixed α-helical," "β-β zipping," and "bivalent" modes of binding. Additionally, we highlight structural determinants that are the basis of effector specificity. We conclude by expanding on functional implications that are emerging from available structural information under our proposed classification scheme.

译文

:Arf和Rab蛋白是小GTPases超家族的成员,位于特定的亚细胞区室并调节细胞内运输。为了执行其细胞功能,Alfs / Rabs与众多结构上不同的效应蛋白相互作用。多年来,许多Arf / Rab:效应复合物已经结晶,其结构揭示了共享的结合模式,包括α-螺旋堆积,β-β互补和异四聚体组装。我们审查可用的结构信息,并提供用于复杂物深入分析的框架。我们确定的统一特征被组织为针对Arf / Rab:effector相互作用的不同模式的分类方案,其中包括“全α螺旋”,“混合α螺旋”,“β-β拉链”和“二价” ”的绑定方式。此外,我们重点介绍了结构决定子,这些决定子是效应子特异性的基础。最后,我们将对提议的分类方案下从可用结构信息中产生的功能含义进行扩展。

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