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分子动力学模拟揭示卡因类合成酶的结构-活性关系。

Molecular Dynamics Simulation Reveal the Structure-Activity Relationships of Kainoid Synthases.

机构信息

Department of Biochemistry and Molecular Biology, College of Basic Medical Sciences, Naval Medical University, Shanghai 200433, China.

出版信息

Mar Drugs. 2024 Jul 22;22(7):326. doi: 10.3390/md22070326.

Abstract

Kainoid synthases are key enzymes in the biosynthesis of kainoids. Kainoids, as represented by DA and KA, are a class of naturally occurring non-protein amino acids with strong neurotransmitter activity in the mammalian central nervous system. Marine algae kainoid synthases include PnDabC from diatoms, which synthesizes domoic acid (DA), and DsKabC and GfKabC from red algae, which synthesize kainic acid (KA). Elucidation of the catalytic mechanism of kainoid synthases is of great significance for the rational design of better biocatalysts to promote the industrial production of kainoids for use in new drugs. Through modeling, molecular docking, and molecular dynamics simulations, we investigated the conformational dynamics of kainoid synthases. We found that the kainoid synthase complexes showed different stability in the simulation, and the binding and catalytic processes showed significant conformational transformations of kainoid synthase. The residues involved in specific interactions with the substrate contributed to the binding energy throughout the simulation process. Binding energy, the relaxed active pocket, electrostatic potential energy of the active pocket, the number and rotation of aromatic residues interacting with substrates during catalysis, and the number and frequency of hydrogen bonds between the individual functional groups revealed the structure-activity relationships and affected the degree of promiscuity of kainoid synthases. Our research enriches the understanding of the conformational dynamics of kainoid synthases and has potential guiding significance for their rational design.

摘要

卡因型合成酶是卡因类生物合成中的关键酶。卡因类化合物,以 DA 和 KA 为代表,是一类存在于哺乳动物中枢神经系统中的天然非蛋白氨基酸,具有很强的神经递质活性。海洋藻类中的卡因型合成酶包括来自硅藻的 PnDabC,它合成软骨藻酸 (DA),以及来自红藻的 DsKabC 和 GfKabC,它们合成 kainic acid (KA)。阐明卡因型合成酶的催化机制对于合理设计更好的生物催化剂以促进卡因类化合物的工业生产,用于新药的研发具有重要意义。通过建模、分子对接和分子动力学模拟,我们研究了卡因型合成酶的构象动力学。我们发现,在模拟过程中,卡因型合成酶复合物表现出不同的稳定性,结合和催化过程表现出卡因型合成酶明显的构象转变。与底物特异性相互作用的残基在整个模拟过程中对结合能有贡献。结合能、松弛的活性口袋、活性口袋的静电势能、催化过程中与底物相互作用的芳香族残基的数量和旋转、以及各个官能团之间氢键的数量和频率揭示了结构-活性关系,并影响了卡因型合成酶的混杂程度。我们的研究丰富了对卡因型合成酶构象动力学的理解,对其合理设计具有潜在的指导意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8157/11277886/5f35aeab20d9/marinedrugs-22-00326-g001.jpg

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