首页> 外文期刊>Journal of the American Chemical Society >Inverted Binding of Non-natural Substrates in Strictosidine Synthase Leads to a Switch of Stereochemical Outcome in Enzyme-Catalyzed Pictet-Spengler Reactions
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Inverted Binding of Non-natural Substrates in Strictosidine Synthase Leads to a Switch of Stereochemical Outcome in Enzyme-Catalyzed Pictet-Spengler Reactions

机译:Strictosidine合酶中非天然底物的反向结合导致酶催化的Pictet-Spengler反应中的立体化学结果的转换。

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The Pictet—Spengler reaction is a valuable route to l,2,3,4-tetrahydro-β-carboline (THBC) and isoquinoline scaffolds found in many important pharmaceuticals. Strictosidine synthase (STR) catalyzes the Pictet—Spengler condensation of tryptamine and the aldehyde secologanin to give (S)-strictosidine as a key intermediate in indole alkaloid biosynthesis. STRs also accept short-chain aliphatic aldehydes to give enantioenriched alkaloid products with up to 99% ee STRs are thus valuable asymmetric organocatalysts for applications in organic synthesis. The STR catalysis of reactions of small aldehydes gives an unexpected switch in stereopreference, leading to formation of the (R)-products. Here we report a rationale for the formation of the (R)-configured products by the STR enzyme from Ophiorrhiza pumila (OpSTR) using a combination of X-ray crystallography, mutational, and molecular dynamics (MD) studies. We discovered that short-chain aldehydes bind in an inverted fashion compared to secologanin leading to the inverted stereopreference for the observed (R)-product in those cases. The study demonstrates that the same catalyst can have two different productive binding modes for one substrate but give different absolute configuration of the products by binding the aldehyde substrate differently. These results will guide future engineering of STRs and related enzymes for biocatalytic applications.
机译:Pictet-Spengler反应是通往许多重要药物中的1,2,3,4-四氢-β-咔啉(THBC)和异喹啉骨架的重要途径。偏苯三酚合酶(STR)催化色胺和醛仲硫菌素的Pictet-Spengler缩合反应,生成(S)-缩氨嘧啶,作为吲哚生物碱生物合成中的关键中间体。 STR还接受短链脂族醛,以提供具有高达99%ee ee的对映体富集的生物碱产品。STR是用于有机合成的有价值的不对称有机催化剂。小醛反应的STR催化在立体偏好方面产生了意想不到的变化,导致(R)产物的形成。在这里,我们结合X射线晶体学,突变和分子动力学(MD)研究,报告了来自Ophiorrhiza pumila(OpSTR)的STR酶形成(R)-构型产物的基本原理。我们发现短链醛与secologanin相比以反向方式结合,从而导致在这些情况下所观察到的(R)产物具有反向立体偏好。研究表明,相同的催化剂可以对一种底物具有两种不同的生产性结合模式,但是通过对醛底物的不同结合而给出不同的产物绝对构型。这些结果将为生物催化应用中的STR和相关酶的未来工程设计提供指导。

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