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焦磷酸盐、三磷酸盐和氯化钾对大鼠肌肉腺苷酸脱氨酶的影响。

Effects of pyrophosphate, triphosphate, and potassium chloride on adenylate deaminase from rat muscle.

作者信息

Wheeler T J, Lowenstein J M

出版信息

Biochemistry. 1980 Sep 30;19(20):4564-7. doi: 10.1021/bi00561a004.

Abstract

Inorganic pyrophosphate and triphosphate inhibit adenylate deaminase from rat skeletal muscle with K1 values of 10 and 1.5 microM, respectively, in the presence of 150 mM KCl at pH 7. They act by reducing the apparent affinity of the enzyme for AMP, with relatively small effects on Vmax. The inhibitions are diminished by H+, the KI values increasing two- to threefold in going from pH 7.0 to 6.2, and are relieved by ADP. These properties are similar to the inhibitions produced by GTP and ATP, indicating that pyrophosphate and triphosphate act like analogues of the nucleoside triphosphates. Neither of these inhibitors shows relief of inhibition at high concentrations as do ATP and GTP. These results suggest that nucleotides interact with the inhibitor site of the enzyme primarily through their phosphate moieties and with the activator site primarily through their nucleoside moieties. As the concentration of KCl is increased from 25 to 300 mM, the apparent affinities of the enzyme for ATP, GTP, orthophosphate, pyrophosphate, and triphosphate are decreased 8-100-fold. The cooperativity of the inhibitions is increased with the Hill coefficient rising from 1.0 to 1.3-1.8, and the maximum inhibition approaches 100%. Maximum activation by ADP is reduced from 1800% at 25 mM KCl to 80% at 200 mM KCl. Experiments with (CH3)4NCl indicate that activation of the enzyme by KCl involves both specific K+ effects and ionic strength effects.

摘要

在pH 7、150 mM KCl存在的条件下,无机焦磷酸和三磷酸分别以10和1.5 microM的K1值抑制大鼠骨骼肌中的腺苷酸脱氨酶。它们通过降低酶对AMP的表观亲和力起作用,对Vmax的影响相对较小。H+可减弱这种抑制作用,从pH 7.0降至6.2时,KI值增加两到三倍,而ADP可解除这种抑制。这些特性与GTP和ATP产生的抑制作用相似,表明焦磷酸和三磷酸的作用类似于核苷三磷酸的类似物。与ATP和GTP不同,这些抑制剂在高浓度时均未表现出抑制作用的解除。这些结果表明,核苷酸与酶的抑制剂位点主要通过其磷酸基团相互作用,与激活剂位点主要通过其核苷基团相互作用。随着KCl浓度从25 mM增加到300 mM,酶对ATP、GTP、正磷酸盐、焦磷酸盐和三磷酸的表观亲和力降低8 - 100倍。抑制作用的协同性增加,希尔系数从1.0升至1.3 - 1.8,最大抑制率接近100%。ADP的最大激活率从25 mM KCl时的1800%降至200 mM KCl时的80%。用(CH3)4NCl进行的实验表明,KCl对酶的激活涉及特定的K+效应和离子强度效应。

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