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用氘代二氢乳清酸对克氏锥虫二氢乳清酸氧化酶进行的机制研究。

Mechanistic studies with deuterated dihydroorotates on the dihydroorotate oxidase from Crithidia fasciculata.

作者信息

Pascal R A, Walsh C T

出版信息

Biochemistry. 1984 Jun 5;23(12):2745-52. doi: 10.1021/bi00307a033.

Abstract

Deuterium-labeled dihydroorotates bearing one, two, or three deuteriums at the pair of C4 and C5 positions have been synthesized in high isotopic and chiral purity and characterized by NMR and mass spectroscopy. These substrates have been used with the FMN-containing biosynthetic dihydroorotate oxidase from Crithidia fasciculata [Pascal, R., Trang, N., Cerami, A., & Walsh, C. (1983) Biochemistry 22, 171] to probe stereochemistry and mechanism. At pH 6.0 the (4RS)-[5,5-2H2]dihydroorotate shows a Vmax isotope effect (DV) of 2.83; since the (4S,5R)-[5-2H]dihydroorotate shows a DV of no more than 1.1, a secondary effect, the overall stereochemistry of desaturation is anti as previously reported for the degradative orotate reductase from Clostridium oroticum. The (4RS)-[4-2H]dihydroorotate shows a DV of 2.97, indicating removal of the C4-H is also partially rate limiting at pH 6.0. When trideuterio (4RS)-[4,5,5-2H3]dihydroorotate was tested, a DV of 8.0, a value close to the product of the separate isotope effects at the 4- and 5S-positions, was observed. At this pH then, both C-H cleavage steps are partly rate limiting in catalysis. Under anaerobic conditions without an electron acceptor the enzyme catalyzes the preferential exchange of the 5S hydrogen with solvent protons. The aggregate isotope effects on Vmax (DV) and on Vmax/Km [D(V/K)] are analyzed and suggest a stepwise rather than a concerted mechanism for this biosynthetic desaturation in pyrimidine biosynthesis.

摘要

已合成出在C4和C5位带有一个、两个或三个氘原子的氘代二氢乳清酸,其具有高同位素纯度和手性纯度,并通过核磁共振和质谱进行了表征。这些底物已与来自克氏锥虫的含黄素单核苷酸的生物合成二氢乳清酸氧化酶[Pascal, R., Trang, N., Cerami, A., & Walsh, C. (1983) Biochemistry 22, 171]一起用于探究立体化学和反应机理。在pH 6.0时,(4RS)-[5,5-2H2]二氢乳清酸显示出2.83的Vmax同位素效应(DV);由于(4S,5R)-[5-2H]二氢乳清酸显示出不超过1.1的DV,即二级效应,因此脱氢反应的总体立体化学为反式,这与之前报道的来自产氨棒状杆菌的降解型乳清酸还原酶的情况一致。(4RS)-[4-2H]二氢乳清酸显示出2.97的DV,表明在pH 6.0时C4-H的去除也部分限制了反应速率。当测试三氘代(4RS)-[4,5,5-2H3]二氢乳清酸时,观察到8.0的DV,该值接近4-位和5S-位单独同位素效应的乘积。因此,在这个pH值下,两个C-H裂解步骤在催化反应中都部分限制了反应速率。在没有电子受体的厌氧条件下,该酶催化5S氢与溶剂质子的优先交换。分析了对Vmax(DV)和Vmax/Km [D(V/K)]的总同位素效应,结果表明嘧啶生物合成中这种生物合成脱氢反应的机制是分步的而非协同的。

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