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Homology modeling and docking studies of a Δ9-fatty acid desaturase from a Cold-tolerant Pseudomonas sp. AMS8

机译:耐寒假单胞菌属物种的Δ9-脂肪酸去饱和酶的同源性建模和对接研究。 AMS8

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摘要

Membrane-bound fatty acid desaturases perform oxygenated desaturation reactions to insert double bonds within fatty acyl chains in regioselective and stereoselective manners. The Δ9-fatty acid desaturase strictly creates the first double bond between C9 and 10 positions of most saturated substrates. As the three-dimensional structures of the bacterial membrane fatty acid desaturases are not available, relevant information about the enzymes are derived from their amino acid sequences, site-directed mutagenesis and domain swapping in similar membrane-bound desaturases. The cold-tolerant Pseudomonas sp. AMS8 was found to produce high amount of monounsaturated fatty acids at low temperature. Subsequently, an active Δ9-fatty acid desaturase was isolated and functionally expressed in Escherichia coli. In this paper we report homology modeling and docking studies of a Δ9-fatty acid desaturase from a Cold-tolerant Pseudomonas sp. AMS8 for the first time to the best of our knowledge. Three dimensional structure of the enzyme was built using MODELLER version 9.18 using a suitable template. The protein model contained the three conserved-histidine residues typical for all membrane-bound desaturase catalytic activity. The structure was subjected to energy minimization and checked for correctness using Ramachandran plots and ERRAT, which showed a good quality model of 91.6 and 65.0%, respectively. The protein model was used to preform MD simulation and docking of palmitic acid using CHARMM36 force field in GROMACS Version 5 and Autodock tool Version 4.2, respectively. The docking simulation with the lowest binding energy, −6.8 kcal/mol had a number of residues in close contact with the docked palmitic acid namely, Ile26, Tyr95, Val179, Gly180, Pro64, Glu203, His34, His206, His71, Arg182, Thr85, Lys98 and His177. Interestingly, among the binding residues are His34, His71 and His206 from the first, second, and third conserved histidine motif, respectively, which constitute the active site of the enzyme. The results obtained are in compliance with the in vivo activity of the Δ9-fatty acid desaturase on the membrane phospholipids.
机译:膜结合的脂肪酸去饱和酶进行氧化去饱和反应,以区域选择性和立体选择性的方式在脂肪酰基链中插入双键。 Δ9脂肪酸去饱和酶严格在C9和大多数饱和底物的10个位置之间产生第一个双键。由于细菌膜脂肪酸去饱和酶的三维结构不可用,因此有关酶的相关信息来自它们的氨基酸序列,定点诱变和相似的膜结合去饱和酶中的结构域交换。耐寒假单胞菌发现AMS8在低温下产生大量的单不饱和脂肪酸。随后,分离出活性的Δ9-脂肪酸去饱和酶并在大肠杆菌中功能性表达。在本文中,我们报告了耐寒假单胞菌sp。Δ9-脂肪酸去饱和酶的同源性建模和对接研究。据我们所知,这是AMS8的第一次。使用合适的模板,使用9.18版的MODELLER构建酶的三维结构。蛋白质模型包含所有膜结合的去饱和酶催化活性中典型的三个保守组氨酸残基。对结构进行了能量最小化,并使用Ramachandran图和ERRAT检查结构的正确性,该模型分别显示了91.6%和65.0%的良好质量模型。分别使用GROMACS版本5和Autodock工具版本4.2中的CHARMM36力场,使用蛋白质模型对MD进行棕榈酸酯的MD模拟和对接。具有最低结合能-6.8 kcal / mol的对接模拟具有许多与对接的棕榈酸紧密接触的残基,即Ile26,Tyr95,Val179,Gly180,Pro64,Glu203,His34,His206,His71,Arg182,Thr85 ,Lys98和His177。有趣的是,在结合残基中分别是来自第一个,第二个和第三个保守组氨酸基序的His34,His71和His206,它们构成了酶的活性位点。获得的结果与Δ9-脂肪酸去饱和酶对膜磷脂的体内活性相符。

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