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Examining marginal sequence similarities between bacterial type III secretion system components and Trypanosoma cruzi surface proteins: horizontal gene transfer or convergent evolution?

机译:检查细菌III型分泌系统成分和克鲁斯锥虫表面蛋白之间的边缘序列相似性:水平基因转移还是收敛进化?

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摘要

The cell invasion mechanism of Trypanosoma cruzi has similarities with some intracellular bacterial taxa especially regarding calcium mobilization. This mechanism is not observed in other trypanosomatids, suggesting that the molecules involved in this type of cell invasion were a product of (1) acquisition by horizontal gene transfer (HGT); (2) secondary loss in the other trypanosomatid lineages of the mechanism inherited since the bifurcation Bacteria-Neomura (1.9 billion to 900 million years ago); or (3) de novo evolution from non-homologous proteins via convergent evolution. Similar to T. cruzi, several bacterial genera require increased host cell cytosolic calcium for intracellular invasion. Among intracellular bacteria, the mechanism of host cell invasion of genus Salmonella is the most similar to T. cruzi. The invasion of Salmonella occurs by contact with the host's cell surface and is mediated by the type III secretion system (T3SS) that promotes the contact-dependent translocation of effector proteins directly into host's cell cytoplasm. Here we provide evidence of distant sequence similarities and structurally conserved domains between T. cruzi and Salmonella spp T3SS proteins. Exhaustive database searches were directed to a wide range of intracellular bacteria and trypanosomatids, exploring sequence patterns for comparison of structural similarities and Bayesian phylogenies. Based on our data we hypothesize that T. cruzi acquired genes for calcium mobilization mediated invasion by ancient HGT from ancestral Salmonella lineages.
机译:克氏锥虫的细胞入侵机制与某些细胞内细菌类群有相似之处,尤其是在钙动员方面。在其他锥虫中没有观察到这种机制,这表明参与这种细胞侵袭的分子是(1)通过水平基因转移(HGT)获得的产物。 (2)自分叉细菌-新村(19亿至9亿年前)以来继承的该机制的其他锥虫类谱系的继发性损失; (3)通过融合进化从非同源蛋白质重新进化。类似于克鲁氏锥虫,一些细菌属需要增加的宿主细胞胞质钙才能侵入细胞内。在细胞内细菌中,沙门氏菌属宿主细胞入侵的机制与克鲁氏梭菌最相似。沙门氏菌的入侵是通过与宿主细胞表面接触而发生的,并受到III型分泌系统(T3SS)的介导,T3SS促进依赖效应子的接触依赖性转位直接进入宿主细胞质。在此,我们提供了克鲁氏梭菌和沙门氏菌spp T3SS蛋白之间的远距离序列相似性和结构保守域的证据。详尽的数据库搜索针对广泛的细胞内细菌和锥虫,探索序列模式以比较结构相似性和贝叶斯系统发育。根据我们的数据,我们假设克鲁氏锥虫获得了由古人类HGT介导的钙动员入侵祖先沙门氏菌谱系的基因。

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