首页> 外文OA文献 >Prochiral selectivity in H2O2-promoted oxidation of arylalkanols catalysed by chloroperoxidase. The role of the interactions between the OH group and the amino-acid residues in the enzyme active site
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Prochiral selectivity in H2O2-promoted oxidation of arylalkanols catalysed by chloroperoxidase. The role of the interactions between the OH group and the amino-acid residues in the enzyme active site

机译:氯过氧化物酶催化H2O2促进芳基链烷醇氧化的前手性选择性。 OH基团与酶活性位点中氨基酸残基之间相互作用的作用

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摘要

The H2O2-promoted oxidations of (R)-[alpha-H-2(1)]-and (S)-[alpha-H-2(1)]-arylalkanols catalysed by chloroperoxidase (CPO) from Caldariomyces fumago have been investigated. It has been found that with (R)-[alpha-H-2(1)]-alcohols, the oxidation involves almost exclusively the cleavage of the C-H bond, whereas in the case of the oxidation of (S)-[alpha-H-2(1)]alcohols, the C-D bond is preferentially broken. These results clearly indicate that the reactions of corresponding undeuterated arylalkanols are characterized by a high prochiral selectivity, involving the cleavage of the pro-S C-H bond. This prochiral selectivity is poorly influenced by the electronic effect of ring substituents, whereas it decreases with the length of the carbon lateral chain, in the order: benzyl alcohol > 2-phenylethanol > 3-phenylpropanol. Molecular binding studies showed that the main factor directing the docking of the substrate in such a specific orientation in the enzyme active site is the interaction between the alcoholic OH group and the residue Glu183. This interaction is likely to drive both the stereochemistry and the regiochemistry of these reactions. A bifurcated hydrogen bond involving the OH group, the carboxylate oxygen of Glu183 and the oxoferryl oxygen might also be operating.
机译:已经研究了由烟酒Caldariomyces fumago的氯过氧化物酶(CPO)催化(R)-[α-H-2(1)]-和(S)-[α-H-2(1)]-芳基烷醇的H2O2促进的氧化反应。 。已经发现,对于(R)-[α-H-2(1)]-醇,氧化几乎只涉及CH键的裂解,而在(S)-[α-H-(2-)-醇的氧化情况下H-2(1)]醇,CD键优先被破坏。这些结果清楚地表明,相应的未氘代芳基链烷醇的反应的特征在于高的手性选择性,包​​括前SC 3 H键的断裂。该手性选择性受环取代基的电子作用的影响很小,而随碳侧链长度的增加而降低,顺序为:苯甲醇> 2-苯基乙醇> 3-苯基丙醇。分子结合研究表明,指导底物以这种特定方向在酶活性位点停靠的主要因素是醇羟基与残基Glu183之间的相互作用。这种相互作用可能会驱动这些反应的立体化学和区域化学。涉及OH基,Glu183的羧酸氧和草酰氧的分叉氢键也可能起作用。

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