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Ruminococcal cellulosome systems from rumen to human

机译:从瘤胃到人类的瘤胃球菌纤维素系统

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A cellulolytic fiber-degrading bacterium, Ruminococcus champanellensis, was isolated from human faecal samples, and its genome was recently sequenced. Bioinformatic analysis of the R.champanellensis genome revealed numerous cohesin and dockerin modules, the basic elements of the cellulosome, and manual sequencing of partially sequenced genomic segments revealed two large tandem scaffoldin-coding genes that form part of a gene cluster. Representative R.champanellensis dockerins were tested against putative cohesins, and the results revealed three different cohesin-dockerin binding profiles which implied two major types of cellulosome architectures: (i) an intricate cell-bound system and (ii) a simplistic cell-free system composed of a single cohesin-containing scaffoldin. The cell-bound system can adopt various enzymatic architectures, ranging from a single enzyme to a large enzymatic complex comprising up to 11 enzymes. The variety of cellulosomal components together with adaptor proteins may infer a very tight regulation of its components. The cellulosome system of the human gut bacterium R.champanellensis closely resembles that of the bovine rumen bacterium Ruminococcus flavefaciens. The two species contain orthologous gene clusters comprising fundamental components of cellulosome architecture. Since R.champanellensis is the only human colonic bacterium known to degrade crystalline cellulose, it may thus represent a keystone species in the human gut.
机译:从人类粪便样品中分离出一种纤维素分解纤维降解细菌Ruminococcus champanellensis,最近对其基因组进行了测序。 R.champanellensis基因组的生物信息学分析揭示了众多粘着蛋白和dockerin模块,纤维素的基本元素以及部分测序的基因组片段的手动测序发现了两个大的串联支架蛋白编码基因,这些基因构成了基因簇的一部分。测试了代表R.champanellensis dockerins的假定黏附素,结果揭示了三种不同的cohesin-dockerin结合谱,这暗示了两种主要的纤维素体结构:(i)复杂的细胞结合系统和(ii)简化的无细胞系统由单个含黏着蛋白的支架组成。细胞结合的系统可以采用多种酶促结构,范围从单一酶到包含多达11种酶的大型酶促复合物。各种纤维素成分与衔接蛋白一起可以推断其成分的调控非常严格。人肠道细菌R.ch​​ampanellensis的纤维素系统与牛瘤胃细菌Ruminococcus flavefaciens的非常相似。这两个物种包含直系同源基因簇,该直系同源基因簇包含纤维素体结构的基本成分。由于尚佩尔乳杆菌是已知的唯一能降解结晶纤维素的人类结肠细菌,因此它可能代表了人类肠道中的关键物种。

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