首页> 美国卫生研究院文献>other >Coupled Methyl-Group Epimerization and Reduction by Polyketide Synthase Ketoreductase Domains. Ketoreductase-Catalyzed Equilibrium Isotope Exchange
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Coupled Methyl-Group Epimerization and Reduction by Polyketide Synthase Ketoreductase Domains. Ketoreductase-Catalyzed Equilibrium Isotope Exchange

机译:耦合的甲基基差和聚酮化合物合酶酮还原酶域的还原。酮还原酶催化的平衡同位素交换

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摘要

Incubation of [2-2H]-(2S,3R)-2-methyl-3-hydroxypentanoyl-SACP ([2-2H]->1a) with the epimerizing ketoreductase domain EryKR1 in the presence of a catalytic amount NADP+ (0.05 equiv) resulted in time-and cofactor-dependent washout of deuterium from >1a, as a result of equilibrium isotope exchange of transiently generated [2-2H]-2-methyl-3-ketopentanoyl-ACP (>2). Incubations of [2-2H]-(2S,3S)-2-methyl-3-hydroxypentanoyl-SACP ([2-2H]->1b) with RifKR7 and with NysKR1 also resulted in time-dependent loss of deuterium. By contrast, incubations of [2-2H]-(2R,3S)-2-methyl-3-hydroxypentanoyl-SACP ([2-2H]->1c) and [2-2H]-(2R,3R)-2-methyl-3-hydroxypentanoyl-SACP ([2-2H]->1d) with the non-epimerizing ketoreductase domains EryKR6 and TylKR1, respectively, did not result in any significant washout of deuterium. The isotope exchange assay directly establishes that specific polyketide synthase ketoreductase domains also have an intrinsic epimerase activity, thus enabling mechanistic analysis of a key determinant of polyketide stereocomplexity.
机译:[2- 2 H]-(2S,3R)-2-甲基-3-羟基戊酰基-SACP([2- 2 H]-> 1a ),在催化量NADP + (0.05当量)存在下,用差向性酮还原酶结构域EryKR1导致> 1a 氘的时间和辅因子依赖性洗脱>,这是瞬时生成的[2- 2 H] -2-甲基-3-酮戊戊酰基-ACP(> 2 )的平衡同位素交换的结果。 [2- 2 H]-(2S,3S)-2-甲基-3-羟基戊酰基-SACP([2- 2 H]-> 1b )与RifKR7和NysKR1也导致了氘的时间依赖性损失。相比之下,[2- 2 H]-(2R,3S)-2-甲基-3-羟基戊酰基-SACP([2- 2 H]-< strong> 1c )和[2- 2 H]-(2R,3R)-2-甲基-3-羟基戊酰基-SACP([2- 2 H]-> 1d )分别具有非表观的酮还原酶结构域EryKR6和TylKR1,不会导致氘的明显清除。同位素交换测定法直接确定特定的聚酮化合物合酶酮还原酶结构域也具有固有的差向异构酶活性,因此能够对聚酮化合物立体复杂性的关键决定因素进行机理分析。

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