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ON THE STEREOSPECIFICITY OF THE COENZYME B-12-DEPENDENT ISOBUTYRYL-COA MUTASE REACTION

机译:辅酶B-12依赖性异丁烯酰-COA突变酶的立体比

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The stereospecificity of the reversible conversion of isobutyryl-Coa into n-butyryl-CoA, catalyzed by isobutyryl-CoA mutase from Streptomyces cinnamonensis, has been investigated by following the turnover of (2S)-and (2R)-[3-C-13] and [2-H-2]isobutyryl-CoA into labeled n-butyryl-CoAs by NMR methods. Using an enzyme extract containing the mutase, it was shown that (2R)-[3(13)C]isobutyryl-CoA is converted predominantly into [4-C-13]- and also at a lower rate into [2-C-13]n-butyryl-CoA. In a complementary experiment, it was shown that (2S)-[3-C-13]-isobutyryl-CoA is transformed rapidly into [2-C-13]- and more slowly into [4-C-13]n-butyryl-CoA. When [2-H-2]-isobutyryl-CoA was transformed on the enzyme both (3R)- and (3S)-[3-H-2(1)]n-butyryl-CoAs were formed, with the (3R) isotopomer in excess. These results reveal a preferred stereochemical course at C2 of isobutyryl-CoA during the rearrangement which is retention, analogous to that observed for the methylmalonyl-CoA mutase reaction. However, the results clearly reveal a loss of stereocontrol during the isobutyryl-CoA mutase reaction, since the products of a formal inversion at C2 are also observed. This has been rationalized here by assuming that the substrate, isobutyryl-CoA, may bind at the active site and react from two different starting conformations, one of which is preferred, and/or that the enzyme loses strict control over the transformation or conformation of bound radical intermediates. The use of gradient enhanced inverse detected heteronuclear 2D H-1-C-13 NMR spectroscopy for monitoring the turnover of (2S)-[3-C-13]isobutyryl-CoA. directly in the NMR tube is also described. This sensitive analytical method should be widely applicable for the direct monitoring of enzymic reactions using C-13 labeled substrates in the presence of large amounts of protium-containing buffer components. [References: 40]
机译:通过跟踪(2S)-和(2R)-[3-C-13]的转换,研究了异丁酰基-Coa可逆转化为正丁酰基-CoA的立体定向性,该可逆转化是由肉桂链霉菌中的异丁酰基-CoA突变酶催化的。通过NMR方法将[2-H-2]异丁酰基-CoA转化为标记的正丁酰基-CoA。使用含有变位酶的酶提取物,已显示(2R)-[3(13)C]异丁酰基-CoA主要转化为[4-C-13]-,并且也以较低的速率转化为[2-C- 13]正丁酰辅酶A。在一个补充实验中,表明(2S)-[3-C-13]-异丁酰基-CoA迅速转化为[2-C-13]-,而缓慢转化为[4-C-13] n-丁酰基-CoA。当将[2-H-2]-异丁酰-CoA转化到酶上时,(3R)-和(3S)-[3-H-2(1)] n-丁酰-CoA都形成了,过量的同位素。这些结果揭示了在重排过程中异丁酰-CoA在C2处的优选立体化学过程,其保留,类似于对甲基丙二酰-CoA变位酶反应观察到的。然而,该结果清楚地表明在异丁酰-CoA突变酶反应期间失去了立体控制,因为还观察到了在C2处形式反转的产物。在此通过假设底物异丁酰辅酶A可以在活性位点结合并从两种不同的起始构象发生反应来进行合理化,其中一种是优选的,和/或该酶失去了对Bcl转化或构象的严格控制。结合自由基的中间体。使用梯度增强的反向检测的异核2D H-1-C-13 NMR光谱仪监测(2S)-[3-C-13]异丁酰基-CoA的营业额。还描述了直接在NMR管中的方法。这种灵敏的分析方法应广泛适用于在存在大量含pro缓冲液成分的情况下使用C-13标记的底物直接监测酶促反应的方法。 [参考:40]

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