添加外源性酰基同丝氨酸内酯信号对铜绿假单胞菌过早培养的影响及鼠李糖脂RhlA酶信号结合域的预测

Masarra M. Sakr, Ghadir S. El-Housseiny, Noha M. Elsayed
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引用次数: 0

摘要

群体感应系统的层次在铜绿假单胞菌的毒力和重要的工业细菌产品如鼠李糖脂和蛋白酶的生产中起着至关重要的作用。本研究研究了在铜绿假单胞菌早培养中添加外源酰基-同丝氨酸内酯合成信号对其蛋白酶和鼠李糖脂产量的影响。在早期指数阶段,诱导鼠李糖脂的产生比蛋白酶的产生反应更快。然后使用I-Tasser程序对鼠李糖脂合成中的第一个关键酶——酰基转移酶RhlA酶的三维结构进行预测,以研究可能影响对n -酰基-高丝氨酸内酯(AHL)存在的反应的可能的蛋白质结构。3D建模显示,具有良好C-score的RhlA具有AHL结合袋,其中在蛋白质中阐明了10个配体结合位点残基。多重序列比对显示与LuxR蛋白同源性较低。虽然从比对中描绘了保守残基,但它们与配体结合残基不同,这表明AHL与RhlA结合的机制与LuxR蛋白不同。经过进一步的生物信息学分析,我们发现RhlA以类似于内酯酶的机制与AHL结合。总之,硅结构域和蛋白质比对分析在RhlA酶的蛋白质结构中发现了AHL结合位点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of adding exogenous acyl homoserine lactone signal to Pseudomonas aeruginosa premature culture and prediction of signal binding domain in Rhamnolipids RhlA enzyme
The hierarchy of the quorum-sensing system plays a crucial role in Pseudomonas (P.) aeruginosa virulence and the production of important industrial bacterial products like rhamnolipids and proteases. In this study, the effect of adding exogenous acyl-homoserine lactone synthetic signal to the premature culture of P. aeruginosa on the production of protease and rhamnolipids was investigated. At the early exponential phase, induction of rhamnolipid production showed a more rapid response than protease production. Prediction of the 3D structure of the acyltransferase RhlA enzyme, which is the first key enzyme in rhamnolipid synthesis, was then done using the I-Tasser program to investigate the possible protein structure that might influence the response to N-acyl-homoserine lactone (AHL) presence. With a good C-score, 3D modeling showed RhlA to have AHL binding pocket where ten ligand binding site residues were elucidated in the protein. Multiple sequence alignment revealed low homology with LuxR proteins. Although conserved residues were depicted from the alignment, they were different from the ligand-binding residues suggesting that AHL binds to RhlA with a different mechanism than LuxR proteins. After further bioinformatics analysis, we found that RhlA binds to AHL in a mechanism similar to the lactonase enzyme. In conclusion, the in silico domain and protein alignment analysis revealed an AHL binding site in the RhlA enzyme protein structure.
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