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首页> 外文期刊>Nature Communications >The C. difficile toxin B membrane translocation machinery is an evolutionarily conserved protein delivery apparatus
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The C. difficile toxin B membrane translocation machinery is an evolutionarily conserved protein delivery apparatus

机译:C.艰难梭菌毒素B膜易位机械是一种进化保守的蛋白质递送装置

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摘要

Large Clostridial Toxins (LCTs) are a family of six homologous protein toxins that are implicated in severe disease. LCTs infiltrate host cells using a translocation domain (LCT-T) that contains both cell-surface receptor binding sites and a membrane translocation apparatus. Despite much effort, LCT translocation remains poorly understood. Here we report the identification of 1104 LCT-T homologs, with 769 proteins from bacteria outside of clostridia. Sequences are widely distributed in pathogenic and host-associated species, in a variety of contexts and architectures. Consistent with these homologs being functional toxins, we show that a distant LCT-T homolog from Serratia marcescens acts as a?pH-dependent translocase to deliver its effector into host cells. Based on evolutionary footprinting of LCT-T homologs, we further define an evolutionarily conserved translocase region that we show is an autonomous translocase capable of delivering heterologous cargo into host cells. Our work uncovers a broad class of translocating toxins and provides insights into LCT translocation.
机译:大型梭菌毒素(LCTS)是六口六种同源蛋白质毒素,其含有剧烈疾病。 LCT使用含有细胞表面受体结合位点和膜易位装置的易位域(LCT-T)渗透宿主细胞。尽管有很多努力,LCT易位仍然明白很差。在这里,我们报告了1104个LCT-T同源物的鉴定,来自梭菌外的细菌769个蛋白质。在各种背景和架构中,序列广泛分布于病原和宿主相关的物种。与这些同源物是功能性毒素的一致性,我们表明来自Serratia Marcescens的远处LCT-T同性恋作为αpH依赖性旋流蛋白酶,以将其效应输送到宿主细胞中。基于LCT-T同源物的进化脚印,我们进一步定义了我们展示的一种进化保守的易位酶区,其能够将异源货物递送到宿主细胞中。我们的工作揭示了一类广泛的译本毒素,并向LCT易位提供了见解。

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