Storey K B
J Biol Chem. 1976 Dec 25;251(24):7810-5.
Adenylate kinase (ATP:AMP phosphotransferase, EC 2.7.4.3) from the mantle muscle of the squid, Loligo pealeii, was purified over 170-fold to homogeneity as judged by polyacrylamide and starch gel electrophoresis. The tissue contains a single isozyme of adenylate kinase, the enzyme from cytoplasmic and mitochondrial compartments (90 and 10% of total activity, respectively) being identical in physical and kinetic properties. Molecular weight was found to be 27,000 +/- 400. The enzyme shows a pH optimum of 8.2 in the forward (APD utilizing) and 7.4 in the reverse direction. Michaelis constants for ADP, ATP, and AMP are 0.70, 0.13, and 0.15 mM, respectively, with optimal Mg2+:adenylate ratios being 1:2 for ADP and 1:1 for ATP. A comparison of mass action ratios with the equilibrium constant indicated that squid adenylate kinase is held out of equilibrium in resting, but not active, muscle. A search for metabolic modulators of adenylate kinase revealed that NADH (Ki of 0.1 mM) was the only modulator which exerted a significant effect within its in vivo concentration range. The data presented indicate that NADH inhibition is the factor maintaining adenylate kinase in a nonequilibrium state in resting muscle and that release of this inhibition can serve to integrate adenylate kinase into the known scheme of intermediary metabolism in this tissue. A sharp drop in NADH levels at the onset on muscular work co-ordinates that activation of aerobic metabolism in this tissue and allows adenylate kinase to return to equilibrium function. At equilibrium, the enzyme can function to ampligy the concentration of AMP, a potent activator and deinhibitor of key glycolytic and Krebs cycle enzymes. The effect of modulators of adenylate kinase in preventing denaturation by heat or proteolysis revealed that NADH and substrates induced conformational changes in the enzyme which rendered it less susceptible to denaturation. The conformation state induced by NADH differed from that induced by substrate.
从枪乌贼(Loligo pealeii)外套膜肌肉中提取的腺苷酸激酶(ATP:AMP磷酸转移酶,EC 2.7.4.3)通过聚丙烯酰胺和淀粉凝胶电泳判断,纯化了170多倍,达到了均一性。该组织含有一种腺苷酸激酶同工酶,细胞质和线粒体部分的酶(分别占总活性的90%和10%)在物理和动力学性质上是相同的。发现分子量为27,000±400。该酶在正向反应(利用APD)中的最适pH为8.2,在反向反应中为7.4。ADP、ATP和AMP的米氏常数分别为0.70、0.13和0.15 mM,ADP的最佳Mg2+:腺苷酸比率为1:2,ATP为1:1。质量作用比与平衡常数的比较表明,枪乌贼腺苷酸激酶在静息但非活动的肌肉中处于非平衡状态。对腺苷酸激酶代谢调节剂的研究表明,NADH(Ki为0.1 mM)是唯一在其体内浓度范围内发挥显著作用的调节剂。所提供的数据表明,NADH抑制是使静息肌肉中的腺苷酸激酶维持在非平衡状态的因素,这种抑制的解除可使腺苷酸激酶融入该组织中已知的中间代谢方案。肌肉工作开始时NADH水平的急剧下降协调了该组织中有氧代谢的激活,并使腺苷酸激酶恢复到平衡功能。在平衡状态下,该酶可发挥作用放大AMP的浓度,AMP是关键糖酵解酶和三羧酸循环酶的有效激活剂和去抑制剂。腺苷酸激酶调节剂在防止热变性或蛋白水解方面的作用表明,NADH和底物诱导了酶的构象变化,使其不易变性。NADH诱导的构象状态与底物诱导的不同。