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Structural and Catalytic Characterization of Pichia stipitis OYE 2.6, a Useful Bioeatalyst for Asymmetric Alkene Reductions

机译:树干毕赤酵母OYE 2.6的结构和催化表征,一种用于不对称烯烃还原的有用生物催化剂

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摘要

We have probed Pichia stipitis CBS 6054 Old Yellow Enzyme 2.6 (OYE 2.6) by several strategies including X-ray crystallography, ligand binding and catalytic assays using the wild-type as well as libraries of site-saturation mutants. The alkene reductase crystallized in space group P6_(3)22 with unit cell dimensions of 127.1 x 123.4 A and its structure was solved to 1.5 A resolution by molecular replacement. The protein environment surrounding the flavin mononucleotide (FMN) cofactor was very similar to those of other OYE superfamily members; however, differences in the putative substrate binding site were also observed. Substrate analog complexes were analyzed by both UV-Vis titration and X-ray crystallography to provide information on possible substrate binding interactions. In addition, four active site residues were targeted for site saturation mutagenesis (Thr 35, He 113, His 188, His 191) and each library was tested against three representativeBaylis-Hillman adducts. Thr 35 could be replaced by Ser with no change in activity; other amino acids (Ala, Cys, Leu, Met, Gin and Val) resulted in diminished catalytic efficiency. The lie 113 replacement library yielded a range of catalytic activities, but had very little impact on stereoselectivity. Finally, the two His residues (188 and 191) were essentially intolerant of substitutions with the exception of the His 191 Asn mutant, which did show significant catalytic ability. Structural comparisons between OYE 2.6 and Saccharomyces pastorianus OYE1 suggest that the key interactions between the substrate hydroxymeth-yl groups and the side-chain of Thr 35 and/or Tyr 78 play an important role in making OYE 2.6 an (S)-selective alkene reductase.
机译:我们已经通过几种策略(包括X射线晶体学,配体结合和使用野生型以及位点饱和突变体文库的催化测定)探究了毕赤氏毕赤酵母CBS 6054老黄酶2.6(OYE 2.6)。烯烃还原酶在空间群P6_(3)22中结晶,其晶胞尺寸为127.1 x 123.4 A,并且通过分子置换将其结构解析为1.5 A的分辨率。黄素单核苷酸(FMN)辅因子周围的蛋白质环境与其他OYE超家族成员的蛋白质环境非常相似。然而,在假定的底物结合位点上也观察到差异。通过UV-Vis滴定和X射线晶体学分析底物类似物复合物,以提供有关可能的底物结合相互作用的信息。另外,将四个活性位点残基靶向位点饱和诱变(Thr 35,He 113,His 188,His 191),并针对三个代表性的Baylis-Hillman加合物测试了每个文库。 Thr 35可以替换为Ser,而活动没有改变。其他氨基酸(Ala,Cys,Leu,Met,Gin和Val)会降低催化效率。 lie 113置换文库产生了一系列催化活性,但对立体选择性影响很小。最后,除了His 191 Asn突变体外,两个His残基(188和191)基本上不耐受取代,后者确实显示出显着的催化能力。 OYE 2.6和巴斯德酿酒酵母OYE1之间的结构比较表明,底物羟甲基与Thr 35和/或Tyr 78侧链之间的关键相互作用在使OYE 2.6成为(S)选择性烯烃还原酶方面起着重要作用。 。

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