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Ancient complement and lineage-specific evolution of the Sec7 ARF GEF proteins in eukaryotes

机译:在真核生物中SEC7 ARF GEF蛋白的古代补充和谱系特异性演变

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摘要

Guanine nucleotide exchange factors (GEFs) are the initiators of signaling by every regulatory GTPase, which in turn act to regulate a wide array of essential cellular processes. To date, each family of GTPases is activated by distinct families of GEFs. Bidirectional membrane trafficking is regulated by ADP-ribosylation factor (ARF) GTPases and the development throughout eukaryotic evolution of increasingly complex systems of such traffic required the acquisition of a functionally diverse cohort of ARF GEFs to control it. We performed phylogenetic analyses of ARF GEFs in eukaryotes, defined by the presence of the Sec7 domain, and found three subfamilies (BIG, GBF1, and cytohesins) to have been present in the ancestor of all eukaryotes. The four other subfamilies (EFA6/PSD, IQSEC7/BRAG, FBX8, and TBS) are opisthokont, holozoan, metazoan, and alveolate/haptophyte specific, respectively, and each is derived from cytohesins. We also identified a cytohesin-derived subfamily, termed ankyrin repeat-containing cytohesin, that independently evolved in amoebozoans and members of the SAR and haptophyte clades. Building on evolutionary data for the ARF family GTPases and their GTPase-activating proteins allowed the generation of hypotheses about ARF GEF protein function(s) as well as a better understanding of the origins and evolution of cellular complexity in eukaryotes.
机译:鸟嘌呤核苷酸交换因子(GEF)是每种调节GTP酶信号传导的引发剂,这反过来法规调节各种各样的必需细胞过程。迄今为止,每个GTP酶的家庭都是由GEFS的不同家庭激活的。双向膜运输受Adp-藜糖基化因子(ARF)GTP酶来调节,并且在越来越复杂的这种交通系统的整个真核演化中的开发需要采购功能各种各样的ARF GEF队列来控制它。我们在真核生物中进行了系统发育分析,由SEC7结构域的存在定义,发现了三种亚属(大,GBF1和细胞蛋白)在所有真核生物的祖先中存在。另外四个亚属(EFA6 / PSD,IQSEC7 / BRAG,FBX8和TBS)分别是Opisthokont,Holozoan,Metazoan和肺泡/触觉细胞特异性,并且每个源自衍生自细胞苷。我们还鉴定了一种细胞蛋白衍生的亚家族,称为含钙蛋白重复的细胞蛋白,其独立地在甲苯磺酸甲烷和SAR的成员中进化。在ARF家族GTP酶的进化数据上建立和GTP酶活化蛋白质允许产生关于ARF GEF蛋白质功能的假设,以及更好地了解真核生物中细胞复杂性的起源和演变。

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