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A pre-metazoan origin of the CRK gene family and co-opted signaling network

机译:CRK基因家族的前所未化起源和共选信号网络

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CRK and CRKL adapter proteins play essential roles in development and cancer through their SRC homology 2 and 3 (SH2 and SH3) domains. To gain insight into the origin of their shared functions, we have investigated their evolutionary history. We propose a term, crk/crkl ancestral (crka), for orthologs in invertebrates before the divergence of CRK and CRKL in the vertebrate ancestor. We have isolated two orthologs expressed in the choanoflagellate Monosiga brevicollis, a unicellular relative to the metazoans. Consistent with its highly-conserved three-dimensional structure, the SH2 domain of M. brevicollis crka1 can bind to the mammalian CRK/CRKL SH2 binding consensus phospho-YxxP, and to the SRC substrate/focal adhesion protein BCAR1 (p130(CAS)) in the presence of activated SRC. These results demonstrate an ancient origin of the CRK/CRKL SH2-target recognition specificity. Although BCAR1 orthologs exist only in metazoans as identified by an N-terminal SH3 domain, YxxP motifs, and a C-terminal FAT-like domain, some pre-metazoan transmembrane proteins include several YxxP repeats in their cytosolic region, suggesting that they are remotely related to the BCAR1 substrate domain. Since the tyrosine kinase SRC also has a pre-metazoan origin, co-option of BCAR1-related sequences may have rewired the crka-dependent network to mediate adhesion signals in the metazoan ancestor.
机译:CRK和CRKL适配器蛋白通过其SRC同源性2和3(SH2和SH3)结构域发挥开发和癌症的基本作用。要深入了解其共享职能的起源,我们已经调查了他们的进化历史。我们提出了一个术语,Crk / Crkl祖先(Crka),用于在脊椎动物祖先的Crk和Crkl发散之前的无脊椎动物中的直椎间。我们已经在Choanoflagellate Monosiga Brevicollis中孤立的两个orthologs,相对于美唑类人。与其高度保守的三维结构一致,M.Brevicollis Crka1的SH2结构域可以与哺乳动物CRK / CRK1SH2结合共有磷酸-YXXP结合,并向SRC基板/焦粘连蛋白BCAR1(P130(CAS))结合在激活的SRC存在下。这些结果表明了CRK / CRKL SH2目标识别特异性的古代起源。尽管仅存在于由N-末端SH3结构域,YXXP基序和C末端脂肪样结构域的Metazoans中存在,但是一些前甲卓膜跨膜蛋白包括几种yxxp在其细胞溶质区域中重复,表明它们是远程的与BCAR1底座域有关。由于酪氨酸激酶SRC还具有前所未化的原点,因此BCAR1相关序列的共选项可以重新加快CrKA依赖网络来介导在美化的祖先中的粘附信号。

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