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体外铅离子对脑阳离子泵酶的抑制作用:低水平[Pb]的影响及匀浆的调节作用

Inhibition of brain cation pump enzyme by in vitro lead ion: effects of low level [Pb] and modulation by homogenate.

作者信息

Bertoni J M, Sprenkle P M

机构信息

Department of Neurology, Jefferson Medical College, Philadelphia, Pennsylvania 19107.

出版信息

Toxicol Appl Pharmacol. 1988 Mar 30;93(1):101-7. doi: 10.1016/0041-008x(88)90029-4.

Abstract

Rat brain homogenates were preincubated with lead chloride for 20 min at 0 degrees C. Inhibition of K-pnitrophenylphosphatase (K-pNPPase), which measures the dephosphorylation step of Na,K-ATPase, reached steady state within 10 min and was readily reversible. The activity in brain, homogenates prepared from 60-day-old rats, expressed (mean +/- SE) as a percentage of control (100.0 +/- 0.48%), fell to 89.4 +/- 0.52% at 0.25 microM [Pb] to 64.2 +/- 1.65% at 5 microM [Pb]. However, between 5 and 25 microM [Pb] K-pNPPase activity significantly increased (to 85.4 +/- 3.14% at 25 microM) before it again fell above 30 microM. Similar results were obtained with brain homogenates prepared from 10-day-old rats. The multiphasic nature of this dose-response curve did not change with changes in buffer, substrate, anion, test tube order, or test tube composition (glass vs plastic), and appeared to be intrinsic to homogenate-Pb interactions. Microsomal preparations also exhibited multiphasicity, but with a shift in the inflection points. However, there was no multiphasicity with commercial hog brain Na,K-ATPase, suggesting an interaction between a component in the rat brain preparations and lead ion. Addition of boiled rat brain homogenate to commercial Na,K-ATPase resulted in partial protection from lead inhibition but did not produce multiphasicity over the ranges tested. Bovine serum albumin provided less protection. We conclude that there is a complex interaction among K-pNPPase activity, some factor in the rat brain homogenate, and low levels of lead ion.

摘要

将大鼠脑匀浆与氯化铅在0℃下预孵育20分钟。对K-对硝基苯磷酸酶(K-pNPPase)的抑制作用(该酶可测定钠钾-ATP酶的去磷酸化步骤)在10分钟内达到稳态且易于逆转。由60日龄大鼠制备的脑匀浆中的活性(以平均值±标准误表示),相对于对照组(100.0±0.48%),在0.25微摩尔/升[铅]时降至89.4±0.52%,在5微摩尔/升[铅]时降至64.2±1.65%。然而,在5至25微摩尔/升[铅]之间,K-pNPPase活性显著增加(在25微摩尔/升时达到85.4±3.14%),之后在高于30微摩尔/升时又再次下降。用10日龄大鼠制备的脑匀浆也得到了类似结果。该剂量反应曲线的多相性质不会因缓冲液、底物、阴离子、试管顺序或试管组成(玻璃与塑料)的变化而改变,似乎是脑匀浆与铅相互作用所固有的。微粒体制剂也表现出多相性,但拐点有所偏移。然而,市售猪脑钠钾-ATP酶没有多相性,这表明大鼠脑制剂中的一种成分与铅离子之间存在相互作用。向市售钠钾-ATP酶中添加煮沸的大鼠脑匀浆可部分保护其免受铅抑制,但在所测试的范围内未产生多相性。牛血清白蛋白提供的保护较少。我们得出结论,K-pNPPase活性、大鼠脑匀浆中的某些因素与低水平铅离子之间存在复杂的相互作用。

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