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氯化汞对大鼠脑微粒体ATP酶系统阳离子和底物激活动力学的影响。

Effect of mercuric chloride on the kinetics of cationic and substrate activation of the rat brain microsomal ATPase system.

作者信息

Rajanna B, Chetty C S, Rajanna S

机构信息

Department of Natural Science, Selma University, AL 36701.

出版信息

Biochem Pharmacol. 1990 Jun 15;39(12):1935-40. doi: 10.1016/0006-2952(90)90612-o.

Abstract

Mercuric chloride (HgCl2), a neurotoxic compound, inhibited the adenosine triphosphatase (ATPase) system in a concentration-dependent manner. Hydrolysis of ATP was linear with time with or without HgCl2 in the reaction mixtures. Higher inhibition of (Na(+)-K+)ATPase activity by HgCl2 was observed in alkaline (8.0 to 9.0) pH and at lower temperatures (17 to 32 degrees). Activation energy values were increased slightly in the presence of HgCl2. Activation of (Na(+)-K+)ATPase by ATP in the presence of HgCl2 showed a decrease in Vmax from 15.29 to 5.0 mumol of inorganic phosphate (Pi)/mg protein/hr with no change in Km. Similarly, activation of K(+)-stimulated p-nitrophenyl phosphatase (K(+)-PNPPase) in the presence of HgCl2 showed a decrease in Vmax from 3.26 to 1.35 mumols of p-nitrophenol (PNP)/mg protein/hr with no change in Km. K(+)-activation kinetic studies indicated that HgCl2 decreased Vmax from 14.01 to 4.30 mumols Pi/mg protein/hr in the case of (Na(+)-K+)ATPase and from 3.45 to 2.40 mumols PNP/mg protein/hr in the case of K(+)-PNPPase with no changes in Km. Na(+)-activation of (Na(+)-K+)ATPase in the presence of HgCl2 showed a decrease in Vmax from 11.06 to 3.23 mumols Pi/mg protein/hr and an increase in Km from 1.06 to 2.08 mM. Preincubation of microsomes with sulfhydryl (SH) agents dithiothreitol, cysteine and glutathione protected HgCl2-inhibition of (Na(+)-K+)ATPase. The data suggest that HgCl2 inhibited (Na(+)-K+)ATPase by interfering with the dephosphorylation of the enzyme-phosphoryl complex.

摘要

氯化汞(HgCl₂)是一种神经毒性化合物,它以浓度依赖的方式抑制腺苷三磷酸酶(ATP酶)系统。在反应混合物中,无论有无HgCl₂,ATP的水解都随时间呈线性变化。在碱性pH值(8.0至9.0)和较低温度(17至32摄氏度)下,观察到HgCl₂对(Na⁺-K⁺)ATP酶活性的抑制作用更强。在HgCl₂存在的情况下,活化能值略有增加。在HgCl₂存在时,ATP对(Na⁺-K⁺)ATP酶的激活作用显示Vmax从15.29降至5.0微摩尔无机磷酸(Pi)/毫克蛋白质/小时,而Km不变。同样,在HgCl₂存在时,K⁺刺激的对硝基苯磷酸酶(K⁺-PNPPase)的激活作用显示Vmax从3.26降至1.35微摩尔对硝基苯酚(PNP)/毫克蛋白质/小时,而Km不变。K⁺激活动力学研究表明,对于(Na⁺-K⁺)ATP酶,HgCl₂使Vmax从14.01降至4.30微摩尔Pi/毫克蛋白质/小时,对于K⁺-PNPPase,使Vmax从3.45降至2.40微摩尔PNP/毫克蛋白质/小时,而Km不变。在HgCl₂存在时,Na⁺对(Na⁺-K⁺)ATP酶的激活作用显示Vmax从11.06降至3.23微摩尔Pi/毫克蛋白质/小时,Km从1.06升至2.08毫摩尔。用巯基(SH)试剂二硫苏糖醇、半胱氨酸和谷胱甘肽对微粒体进行预孵育可保护(Na⁺-K⁺)ATP酶免受HgCl₂的抑制。数据表明,HgCl₂通过干扰酶-磷酰复合物的去磷酸化来抑制(Na⁺-K⁺)ATP酶。

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