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Improved annotation of conjugated bile acid hydrolase superfamily members in Gram-positive bacteria

机译:改进克阳性细菌中共轭胆汁水解酶超家族成员的注释

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Most Gram-positive bacteria inhabiting the gastrointestinal tract are capable of hydrolysing bile salts. Bile salt hydrolysis is thought to play an important role in various biological processes in the host. Therefore, correct annotation of bacterial bile salt hydrolases (Bsh) in public databases (EC 3.5.1.24) is of importance, especially for lactobacilli, which are considered to play a major role in bile salt hydrolysis in vivo. In the present study, all enzymes listed in public databases that belong to the Bsh family and the closely related penicillin V acylase (Pva; EC 3.5.1.11) family were compared with the sequences annotated as Bsh in Lactobacillus plantarum WCFS1, as an example. In Gram-positive bacteria, a clear distinction was made between the two families using sequence alignment, phylogenetic clustering, and protein homology modelling. Biochemical and structural data on experimentally verified Bsh and Pva enzymes were used for validation of function prediction. Hidden Markov models were constructed from the sequence alignments to enable a more accurate prediction of Bsh-encoding genes, and their distinction from those encoding members of the Pva family. Many Pva-related sequences appeared to be annotated incorrectly as Bsh in public databases. This refinement in the annotation of Bsh family members influences the prediction of the function of bsh-like genes in species of the genus Lactobacillus, and it is discussed in detail.
机译:大多数植入胃肠道的革兰氏阳性细菌都能够水解胆汁盐。胆汁盐水解被认为在宿主中的各种生物过程中发挥重要作用。因此,在公共数据库中正确注释细菌胆汁盐水解酶(EC 3.5.1.24)是重要的,特别是对于乳酸杆菌,其被认为在体内胆汁盐水解中发挥着重要作用。在本研究中,将属于BSH家族的公共数据库中列出的所有酶和密切相关的青霉素V acylase(PVA; EC 3.5.1.11)与乳酸杆菌WCFS1中作为BSH注释的序列进行了比较。在革兰氏阳性细菌中,使用序列取向,系统发育聚类和蛋白质同源造型在两个家庭之间进行明确的区别。实验验证BSH和PVA酶的生化和结构数据用于验证功能预测。隐藏的马尔可夫模型由序列对准构成,以使得能够更准确地预测BSH编码基因,以及它们与PVA系列的编码成员的区别。许多相关的PVA相关序列似乎在公共数据库中作为BSH被错误地注释。这种细化在BSH家族成员的注释中影响了在乳酸杆菌属的种类中的BSH样基因的功能预测,并详细讨论。

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