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WASP Family Proteins: Their Evolution and Its Physiological Implications

机译:WASP家庭蛋白:它们的进化及其生理学意义。

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WASP family proteins control actin polymerization by activating the Arp2/3 complex. Several subfamilies exist, but their regulation and physiological roles are not well understood, nor is it even known if all subfamilies have been identified. Our extensive search reveals few novel WASP family proteins. The WASP, WASH, and SCAR/WAVE subfamilies are evolutionarily ancient, with WASH the most universally present, whereas WHAMM/JMY first appears in invertebrates. An unusual Dictyostelium WASP homologue that has lost the WH1 domain has retained its function in clathrin-mediated endocytosis, demonstrating that WASPs can function with a remarkably diverse domain topology. The WASH and SCAR/WAVE regulatory complexes are much more rigidly maintained; their domain topology is highly conserved, and all subunits are present or lost together, showing that the complexes are ancient and functionally interdependent. Finally, each subfamily has a distinctive C motif, indicating that this motif plays a specific role in each subfamily's function, unlike the generic V and A motifs. Our analysis identifies which features are universally conserved, and thus essential, and which are branch-specific modifications. It also shows the WASP family is more widespread and diverse than currently appreciated and unexpectedly biases the physiological role of the Arp2/3 complex toward vesicle traffic.
机译:WASP家族蛋白通过激活Arp2 / 3复合物来控制肌动蛋白的聚合。存在几个亚科,但是它们的调控和生理作用还没有被很好地理解,甚至是否所有亚科都已经被鉴定也不清楚。我们广泛的搜索揭示了很少的新型WASP家族蛋白。 WASP,WASH和SCAR / WAVE子家族在进化上很古老,其中WASH最为普遍,而WHAMM / JMY首先出现在无脊椎动物中。失去了WH1结构域的不寻常的梭菌WASP同源物在网格蛋白介导的内吞作用中保留了其功能,表明WASP可以以非常多样化的结构域拓扑起作用。 WASH和SCAR / WAVE监管体系要严格维护。它们的域拓扑是高度保守的,所有亚基都存在或丢失在一起,表明复合物是古老的并且在功能上相互依赖。最后,每个子家族都有一个独特的C主题,表明该主题在每个子家族的功能中起着特定的作用,这与普通的V和A主题不同。我们的分析确定了哪些功能是通用的,因此是必不可少的,哪些是分支特定的修改。它还表明,WASP家族比目前所认识的更为广泛和多样化,并且意外地使Arp2 / 3复合物的生理作用偏向于囊泡运输。

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