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Molecular Modeling of Myrosinase from Brassica oleracea: A Structural Investigation of Sinigrin Interaction

机译:甘蓝油中黑芥子酶的分子模型:Sinigrin相互作用的结构研究。

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摘要

Myrosinase, which is present in cruciferous plant species, plays an important role in the hydrolysis of glycosides such as glucosinolates and is involved in plant defense. Brassicaceae myrosinases are diverse although they share common ancestry, and structural knowledge about myrosinases from cabbage (Brassica oleracea) was needed. To address this, we constructed a three-dimensional model structure of myrosinase based on Sinapis alba structures using Iterative Threading ASSEmbly Refinement server (I-TASSER) webserver, and refined model coordinates were evaluated with ProQ and Verify3D. The resulting model was predicted with β/α fold, ten conserved N-glycosylation sites, and three disulfide bridges. In addition, this model shared features with the known Sinapis alba myrosinase structure. To obtain a better understanding of myrosinase–sinigrin interaction, the refined model was docked using Autodock Vina with crucial key amino acids. The key nucleophile residues GLN207 and GLU427 were found to interact with sinigrin to form a hydrogen bond. Further, 20-ns molecular dynamics simulation was performed to examine myrosinase–sinigrin complex stability, revealing that residue GLU207 maintained its hydrogen bond stability throughout the entire simulation and structural orientation was similar to that of the docked state. This conceptual model should be useful for understanding the structural features of myrosinase and their binding orientation with sinigrin.
机译:十字花科植物物种中存在的黑芥子酶在糖苷如芥子油苷的水解中起重要作用,并参与植物防御。十字花科的黑芥子酶虽然具有共同的血统,但还是多种多样的,因此需要有关白菜(芸苔)的黑芥子酶的结构知识。为了解决这个问题,我们使用迭代线程ASSEmbly精化服务器(I-TASSER)网络服务器,基于Sinapis alba结构构建了黑芥子酶的三维模型结构,并使用ProQ和Verify3D评估了精化的模型坐标。预测得到的模型具有β/α折叠,十个保守的N-糖基化位点和三个二硫键。另外,该模型与已知的Sinapis alba黑芥子酶结构具有共同的特征。为了更好地了解黑芥子酶与芥子苷的相互作用,使用Autodock Vina与关键的关键氨基酸对接了精确的模型。发现关键亲核残基GLN207和GLU427与芥子苷相互作用形成氢键。此外,进行了20 ns的分子动力学模拟以检查黑芥子酶-芥子苷络合物的稳定性,发现残基GLU207在整个模拟过程中保持其氢键稳定性,并且结构取向与对接状态相似。该概念模型对于理解黑芥子酶的结构特征及其与芥子苷的结合方向应该是有用的。

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