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Mechanistic aspects of cyanogenesis from active-site mutant Ser80Ala of hydroxynitrile lyase from Manihot esculenta in complex with acetone cyanohydrin

机译:来自Manihot esculenta的羟腈裂解酶活性位点突变体Ser80Ala与丙酮氰醇复合形成的氰化机理

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摘要

The structure and function of hydroxynitrile lyase from Manihot esculenta (MeHNL) have been analyzed by X-ray crystallography and site-directed mutagenesis. The crystal structure of the MeHNL–S80A mutant enzyme has been refined to an R-factor of 18.0% against diffraction data to 2.1-Å resolution. The three-dimensional structure of the MeHNL–S80A–acetone cyanohydrin complex was determined at 2.2-Å resolution and refined to an R-factor of 18.7%. Thr11 and Cys81 involved in substrate binding have been substituted by Ala in site-directed mutagenesis. The kinetic measurements of these mutant enzymes are presented. Combined with structural data, the results support a mechanism for cyanogenesis in which His236 as a general base abstracts a proton from Ser80, thereby allowing proton transfer from the hydroxyl group of acetone cyanohydrin to Ser80. The His236 imidazolium cation then facilitates the leaving of the nitrile group by proton donating.
机译:通过X射线晶体学和定点诱变分析了Manihot esculenta(MeHNL)羟腈裂解酶的结构和功能。 MeHNL–S80A突变酶的晶体结构已被精制,相对于衍射数据达到2.1-Å分辨率,其R因子为18.0%。 MeHNL-S80A-丙酮氰醇配合物的三维结构以2.2-Å的分辨率测定,并精炼为R因子18.7%。在定点诱变中,参与底物结合的Thr11和Cys81已被Ala取代。提出了这些突变酶的动力学测量。结合结构数据,结果支持了氰化的机理,其中His236作为通用碱基从Ser80提取质子,从而使质子从丙酮氰醇的羟基转移到Ser80。然后,His236咪唑鎓阳离子通过质子给予促进腈基的离开。

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