Seyama Y, Kasama T, Yamakawa T, Kawaguchi A, Saito K
J Biochem. 1977 Nov;82(5):1325-9. doi: 10.1093/oxfordjournals.jbchem.a131820.
The mechanism of hydrogen incorporation into fatty acids was investigated with an enzyme preparation from baker's yeast. Fatty acids synthesized from malonyl-CoA and acetyl-CoA in the presence of D2O or stereospecifically deuterium-labeled NADPH were isolated and analyzed by mass chromatography to examine the localization of deuterium atoms in the molecule. The following results were obtained: 1. Hydrogen atoms from water were found on the even-numbered methylene carbon atoms (2-hydrogen atoms per carbon atom). The second hydrogen atom was incorporated as the result of hydrogen exchange phenomenon between the methylene group of malonyl CoA and water. 2. HB hydrogen of NADPH was used for beta-ketoacyl reductase. 3. HB hydrogen of NADPH was also used for enoyl reductase. 4. Hydrogen atoms from HB position of NADPH were found on the odd-numbered methylene carbon atoms (2-hydrogen atoms per carbon atom).
利用面包酵母的酶制剂研究了氢掺入脂肪酸的机制。在重水或立体特异性氘标记的NADPH存在下,由丙二酰辅酶A和乙酰辅酶A合成的脂肪酸被分离出来,并通过质谱色谱法进行分析,以检查分子中氘原子的定位。得到以下结果:1. 发现来自水的氢原子位于偶数编号的亚甲基碳原子上(每个碳原子有2个氢原子)。第二个氢原子是丙二酰辅酶A的亚甲基与水之间氢交换现象的结果。2. NADPH的HB氢用于β-酮酰还原酶。3. NADPH的HB氢也用于烯酰还原酶。4. 发现来自NADPH的HB位置的氢原子位于奇数编号的亚甲基碳原子上(每个碳原子有2个氢原子)。