Mukherjee S, Katiyar S S
Department of Chemistry, Indian Institute of Technology, Kanpur, India.
Indian J Biochem Biophys. 2000 Feb;37(1):28-33.
Pigeon liver fatty acid synthetase was inactivated by arginine modifying reagent, phenylglyoxal and 2,3-butanedione. The inactivation of overall fatty acid synthetase was accompanied by the loss of beta-ketoacyl reductase and enoyl-CoA reductase activity. The inactivation followed a pseudo-first order kinetics and sum of the second order rate constants for the two reductase reactions equaled that for the synthetase reaction. Inactivation of all three activities was prevented by NADPH or its analogs 2',5'-ADP and 2'-AMP but not by the corresponding nucleotides containing the 5'-phosphate. These results suggest that binding of NADPH to fatty acid synthetase involves specific interaction of the 2'-phosphate with the guanidino group of arginine residues at the active site of the two reductases. pH-Dependent inactivation by phenylglyoxal indicated that a group with a pka 7.5 is involved in the loss of enzyme activity. Stoichiometric results showed that 4 out of 164 arginine residues per enzyme molecule were essential for the enzyme activity.
鸽肝脂肪酸合成酶可被精氨酸修饰试剂苯乙二醛和2,3 - 丁二酮灭活。整体脂肪酸合成酶的失活伴随着β - 酮酰基还原酶和烯酰辅酶A还原酶活性的丧失。失活遵循假一级动力学,两个还原酶反应的二级速率常数之和等于合成酶反应的二级速率常数。NADPH或其类似物2',5'-ADP和2'-AMP可防止所有三种活性的失活,但含5'-磷酸的相应核苷酸则不能。这些结果表明,NADPH与脂肪酸合成酶的结合涉及2'-磷酸与两种还原酶活性位点上精氨酸残基的胍基之间的特异性相互作用。苯乙二醛引起的pH依赖性失活表明,一个pKa为7.5的基团参与了酶活性的丧失。化学计量结果表明,每个酶分子的164个精氨酸残基中有4个对酶活性至关重要。