Lyle S, Geller D H, Ng K, Westley J, Schwartz N B
Department of Pediatrics, University of Chicago, IL 60637.
Biochem J. 1994 Jul 15;301 ( Pt 2)(Pt 2):349-54. doi: 10.1042/bj3010349.
ATP-sulphurylase catalyses the production of adenosine 5'-phosphosulphate (APS) from ATP and free sulphate with the release of PPi. APS kinase phosphorylates the APS intermediate to produce adenosine 3'-phosphate 5'-phosphosulphate (PAPS). The kinetic mechanism of rat chondrosarcoma ATP-sulphurylase was investigated by steady-state methods in the physiologically forward direction as well as the reverse direction. The sulphurylase activity was coupled to APS kinase activity in order to overcome the thermodynamic constraints of the sulphurylase reaction in the forward direction. Double-reciprocal initial-velocity plots for the forward sulphurylase intersect to the left of the ordinate for this reaction. KmATP and Kmsulphate were found to be 200 and 97 microM respectively. Chlorate, a competitive inhibitor with respect to sulphate, showed uncompetitive inhibition with respect to ATP with an apparent Ki of 1.97 mM. Steady-state data from experiments in the physiologically reverse direction also yielded double-reciprocal initial-velocity patterns that intersect to the left of the ordinate axis, with a KmAPS of 39 microM and a Kmpyrophosphate of 18 microM. The results of steady-state experiments in which Mg2+ was varied indicated that the true substrate is the MgPPi complex. An analogue of APS, adenosine 5'-[beta-methylene]phosphosulphate, was a linear inhibitor competitive with APS and non-competitive with respect to MgPPi. The simplest formal mechanism that agrees with all the data is an ordered steady-state single displacement with MgATP as the leading substrate in the forward direction and APS as the leading substrate in the reverse direction.
ATP硫酸化酶催化由ATP和游离硫酸盐生成5'-磷酸腺苷硫酸酯(APS),并释放焦磷酸(PPi)。APS激酶使APS中间体磷酸化,生成3'-磷酸腺苷5'-磷酸硫酸酯(PAPS)。采用稳态方法,在生理正向和反向方向上研究了大鼠软骨肉瘤ATP硫酸化酶的动力学机制。为了克服正向硫酸化酶反应的热力学限制,将硫酸化酶活性与APS激酶活性偶联。正向硫酸化酶的双倒数初始速度图在该反应纵坐标的左侧相交。发现KmATP和Kmsulphate分别为200和97微摩尔。氯酸盐是硫酸盐的竞争性抑制剂,对ATP表现出非竞争性抑制,表观Ki为1.97毫摩尔。生理反向实验的稳态数据也产生了在纵坐标轴左侧相交的双倒数初始速度模式,KmAPS为39微摩尔,Kmpyrophosphate为18微摩尔。改变Mg2+的稳态实验结果表明,真正的底物是MgPPi复合物。APS的类似物5'-[β-亚甲基]磷酸腺苷硫酸酯是一种与APS竞争的线性抑制剂,对MgPPi无竞争性。与所有数据相符的最简单形式机制是有序稳态单置换,正向以MgATP为主要底物,反向以APS为主要底物。