Cheung Y F, Fung C H, Walsh C
Biochemistry. 1975 Jul;14(13):2981-6. doi: 10.1021/bi00684a029.
The stereochemistry of the two half-reactions catalyzed by the biotin-containing enzyme, transcarboxy-lase from Propionobacteria shermanii, has been determined. The pro-R hydrogen at C-2 of propionyl-coenzyme A is replaced by CO2 in formation of the S isomer of methylmalonyl-CoA, defining the process as retention of configuration. This C-2 hydrogen is abstracted at a rate identical with product formation. For the other half-reaction, pyruvate to oxalacetate, the chiral methyl group methodology of Rose (I. A. Rose (1970), J. Biol. Chem. 245, 6052) was employed. First, it was determined with [3-2-He]pyruvate that a kinetic deuterium isotope effect of 2.1 occurs at Vmax in this carboxyl transfer, indicating that the necessary requirement for discrimination against heavy isotopes of hydrogen existed. Then, 3(S)-[3-2-H,3-H]pyruvate, generated from 3(S)-]E-2-H,3-H]phosphoglycerate, was carboxylated and the oxalacetate trapped as [3030H]malate using malate dehydrogenase. Exhaustive incubation of the tritiated malate (3-H/14-C = 1.95) with fumarase to labilize the pro-R hydrogen at C-3 resulted in release of 65% of the tritium into water. Reisolation of the malate after fumarase action yielded a 30H/14-C ration of 0.67, indicating 34% retention as expected. The theoretical enantiotopic distribution for the observed k1H/k2H of 2.1 is 68:32. Selective enrichment of tritium in the pro-R position at C-3 of malate indicates enzymatic carboxylation of pyruvate with retention of configuration in this half-reaction also.
已确定来自谢氏丙酸杆菌的含生物素酶——转羧酶所催化的两个半反应的立体化学。在甲基丙二酰辅酶A的S异构体形成过程中,丙酰辅酶A的C-2位上的前-R氢被二氧化碳取代,这一过程被定义为构型保留。该C-2氢的提取速率与产物形成速率相同。对于另一个半反应,即丙酮酸到草酰乙酸的反应,采用了罗斯(I. A. 罗斯(1970年),《生物化学杂志》245卷,6052页)的手性甲基方法。首先,用[3-2-H]丙酮酸确定在该羧基转移反应中,Vmax处的动力学氘同位素效应为2.1,这表明存在区分氢的重同位素的必要条件。然后,由3(S)-[E-2-H,3-H]磷酸甘油酸生成的3(S)-[3-2-H,3-H]丙酮酸被羧化,并使用苹果酸脱氢酶将草酰乙酸捕获为[3,3-H]苹果酸。将氚化苹果酸(3-H/14-C = 1.95)与延胡索酸酶充分孵育以使C-3位上的前-R氢不稳定,结果65%的氚释放到水中。延胡索酸酶作用后重新分离得到的苹果酸的3-H/14-C比值为0.67,表明如预期的那样有34%的保留。对于观察到的k1H/k2H为2.1的理论对映体分布为68:32。苹果酸C-3位上前-R位置的氚的选择性富集也表明在这个半反应中丙酮酸的酶促羧化具有构型保留。