首页> 外文期刊>Advances in Microbiology >The Locus PgaABCD of Acinetobacter junii Putatively Responsible for Poly-β-(1,6)-N-Acetylglucosamine Biosynthesis Might Be Related to Biofilm Formation: A Computational Analysis
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The Locus PgaABCD of Acinetobacter junii Putatively Responsible for Poly-β-(1,6)-N-Acetylglucosamine Biosynthesis Might Be Related to Biofilm Formation: A Computational Analysis

机译:推测不动杆菌属的PgaABCD基因座可能与生物膜形成有关:聚β-(1,6)-N-乙酰氨基葡萄糖的生物合成:计算分析

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Poly-β-(1,6)-N-acetylglucosamine (PNAG), the chief mediator of intercellular adhesion in many bacteria, plays an important role in biofilm formation. The pgaABCD locus was recognized from the whole genome sequence of A. junii SH205. The enzyme glycosyltransferase, PgaC, catalyzes the production of PNAG with N-acetyl-D-glucosamine monomer. In this study, the possibility of PNAG biosynthesis in A. junii SH205 with its own PgaC was explored with the aid of bioinformatics. Multiple alignments of PgaC sequences of different bacteria were used to identify conserved amino acid residues that might be critical for the functioning of the protein. Three-dimensional model of A. junii SH205 PgaC was generated for spatial visualization of amino acid residues. The analyses have shown that the protein PgaC has five conserved amino acids, Asp140, Asp233, Gln269, Arg272 and Trp273, critical for the activity of enzyme. Interaction of UDP-N-acetylglucosamine within the conserved pocket of glycosyltransferase was explored from molecular docking studies.
机译:聚-β-(1,6)-N-乙酰氨基葡萄糖(PNAG)是许多细菌中细胞间粘附的主要介质,在生物膜形成中起重要作用。 pgaABCD基因座是从J. junii SH205的全基因组序列中识别的。糖基转移酶PgaC催化带有N-乙酰基-D-葡萄糖胺单体的PNAG的产生。在这项研究中,借助于生物信息学,探索了用其自身的PgaC在朱红曲霉SH205中进行PNAG生物合成的可能性。使用不同细菌的PgaC序列的多重比对来鉴定保守的氨基酸残基,这些残基可能对蛋白质的功能至关重要。产生了A.junii SH205 PgaC的三维模型,用于氨基酸残基的空间可视化。分析表明,PgaC蛋白具有5个保守氨基酸,Asp140,Asp233,Gln269,Arg272和Trp273,对酶的活性至关重要。从分子对接研究中探索了UDP-N-乙酰氨基葡糖在糖基转移酶保守口袋中的相互作用。

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