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紫穗槐-4,11-二烯合酶三维结构的解析及可塑性残基的探究

Insights into the Three-Dimensional Structure of Amorpha-4,11-diene Synthase and Probing of Plasticity Residues.

作者信息

Abdallah Ingy I, Czepnik Magdalena, van Merkerk Ronald, Quax Wim J

机构信息

Department of Chemical and Pharmaceutical Biology, Groningen Research Institute of Pharmacy, University of Groningen , 9713 AV, Groningen, The Netherlands.

出版信息

J Nat Prod. 2016 Oct 28;79(10):2455-2463. doi: 10.1021/acs.jnatprod.6b00236. Epub 2016 Sep 27.

Abstract

Amorphadiene synthase (ADS) is known for its vital role as a key enzyme in the biosynthesis of the antimalarial drug artemisinin. Despite the vast research targeting this enzyme, an X-ray crystal structure of the enzyme has not yet been reported. In spite of the remarkable difference in product profile among various sesquiterpene synthases, they all share a common α-helical fold with many highly conserved regions especially the bivalent metal ion binding motifs. Hence, to better understand the structural basis of the mechanism of ADS, a reliable 3D homology model representing the conformation of the ADS enzyme and the position of its substrate, farnesyl diphosphate, in the active site was constructed. The model was generated using the reported crystal structure of α-bisabolol synthase mutant, an enzyme with high sequence identity with ADS, as a template. Site-directed mutagenesis was used to probe the active site residues. Seven residues were probed showing their vital role in the ADS mechanism and/or their effect on product profile. The generated variants confirmed the validity of the ADS model. This model will serve as a basis for exploring structure-function relationships of all residues in the active site to obtain further insight into the ADS mechanism.

摘要

紫穗槐二烯合酶(ADS)作为抗疟药物青蒿素生物合成中的关键酶,发挥着至关重要的作用。尽管针对该酶进行了大量研究,但尚未有其X射线晶体结构的报道。尽管各种倍半萜合酶的产物谱存在显著差异,但它们都具有共同的α-螺旋折叠结构,且有许多高度保守的区域,尤其是二价金属离子结合基序。因此,为了更好地理解ADS作用机制的结构基础,构建了一个可靠的三维同源模型,该模型代表了ADS酶的构象及其底物法呢基二磷酸在活性位点的位置。该模型以已报道的α-红没药醇合酶突变体的晶体结构为模板生成,该酶与ADS具有高度的序列同一性。采用定点突变技术对活性位点残基进行探测。探测了七个残基,显示出它们在ADS作用机制中的重要作用和/或对产物谱的影响。生成的变体证实了ADS模型的有效性。该模型将作为探索活性位点所有残基的结构-功能关系的基础,以便进一步深入了解ADS的作用机制。

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