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In silico and empirical approaches toward understanding the structural adaptation of the alkaline-stable lipase KV1 from Acinetobacter haemolyticus

机译:在硅和经验方法中理解碱性脂肪酶Kv1的结构调整来自血醇杆菌的结构调整

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Interests in Acinetobacter haemolyticus lipases are showing an increasing trend concomitant with growth of the enzyme industry and the widening search for novel enzymes and applications. Here, we present a structural model that reveals the key catalytic residues of lipase KV1 from A. haemolyticus. Homology modeling of the lipase structure was based on the structure of a carboxylesterase from the archaeon Archaeoglobus fulgidus as the template, which has a sequence that is 58% identical to that of lipase KV1. The lipase KV1 model is comprised of a single compact domain consisting of seven parallel and one anti-parallel -strand surrounded by nine -helices. Three structurally conserved active-site residues, Ser165, Asp259, and His289, and a tunnel through which substrates access the binding site were identified. Docking of the substrates tributyrin and palmitic acid into the pH 8 modeled lipase KV1 active sites revealed an aromatic platform responsible for the substrate recognition and preference toward tributyrin. The resulting binding modes from the docking simulation correlated well with the experimentally determined hydrolysis pattern, for which pH 8 and tributyrin being the optimum pH and preferred substrate. The results reported herein provide useful insights into future structure-based tailoring of lipase KV1 to modulate its catalytic activity.
机译:血液溶血杆菌脂肪酶的兴趣显示出伴随酶工业的生长和扩大新酶和应用的趋势伴随的趋势。在这里,我们提出了一种结构模型,揭示了来自A HaeMolyticus的脂肪酶Kv1的关键催化残基。脂肪酶结构的同源性建模基于来自Archaeon archaeoglobus fulgidus的羧基酯酶的结构作为模板,其具有与脂肪酶Kv1的序列相同的序列。脂肪酶Kv1模型由单个小域组成,由七个平行,一个由九个高信号包围的一个反平行的域。鉴定了三种结构保守的有效位残留物,Ser165,Asp259和His289,以及隧道通过该隧道通过该隧道通过该隧道进入所述结合位点。将底物呋喃蛋白和棕榈酸的对接进入pH8模型脂肪酶Kv1活性位点显示负责底物识别和偏好朝向呋喃的芳香平台。来自对接模拟的得到的结合模式与实验确定的水解图谱有良好,pH 8和丁黄琳是最佳pH和优选的基材。本文报道的结果为未来的基于结构的脂肪酶Kv1剪裁提供了有用的见解,以调节其催化活性。

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