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一种调节剂和Ca2+对大鼠脑组织中核苷环3':5'-单磷酸磷酸二酯酶活性的调节

Regulation of nucleoside cyclic 3':5'-monophosphate phosphodiesterase activity from rat brain by a modulator and Ca2+.

作者信息

Kakiuchi S, Yamazaki R, Teshima Y, Uenishi K

出版信息

Proc Natl Acad Sci U S A. 1973 Dec;70(12):3526-30. doi: 10.1073/pnas.70.12.3526.

Abstract

Gel filtration of the 40,000 rpm supernatant fraction of a homogenate of rat cerebral cortex on a Sepharose 6B column yielded two fractions: fraction II with the "Ca(2+) plus Mg(2+)-dependent" phosphodiesterase activity and fraction III containing its modulator. The activity of fraction II was stimulated by micromolar concentrations of Ca(2+) and the modulator when present together; the modulator stimulated the activity of fraction II only when the Ca(2+) concentration was above a threshold value (about 2 muM with 0.4-1 muM substrate), and the stimulatory effect of Ca(2+) was dependent upon the presence of the modulator. A possibility is discussed that the modulator may reversibly bind to the enzyme, which by itself is inactive, to form an active enzyme-modulator complex and that Ca(2+) stimulates the activity of phosphodiesterase by shifting the equilibrium between these three species towards the formation of the active enzyme-modulator complex. Although fraction II hydrolyzed both cyclic AMP and cyclic GMP, hydrolysis of the latter was more significantly influenced by Ca(2+) and the modulator than that of the former, and the "Ca(2+) plus Mg(2+)-dependent" phosphodiesterase is likely to be a cyclic GMP enzyme. This conclusion is based on the following evidence: (a) Ca(2+) stimulated hydrolysis of cyclic GMP by fraction II more than that of cyclic AMP. (b) In the presence of Ca(2+) and the modulator, fraction II hydrolyzed cyclic GMP about 8 times faster than cyclic AMP when incubated with 0.4 muM substrate. (c) Half-maximal stimulation of hydrolysis of cyclic GMP was attained at a lower concentration of Ca(2+) (4 muM) than that of cAMP (8 muM). (d) Increase in the concentration of Ca(2+) from 0.06 muM to 12 muM in the presence of the modulator caused a decrease in the K(m) value of cyclic GMP hydrolysis by fraction II from 20 muM to 2 muM accompanied by 4-fold increase in the V(max) value. Under similar conditions, there was only a slight decrease in the K(m) value of cylic AMP hydrolysis (90 muM --> 50 muM), although the V(max) value increased 7-fold. The anomalous shape of the kinetic plot of cyclic GMP hydrolysis became linear when the Ca(2+) concentration was increased in the presence of the modulator. The modulator seems to be a protein, but it is heat stable. It is probably identical to the protein activator of phosphodiesterase first described by Cheung.

摘要

用葡聚糖凝胶6B柱对大鼠大脑皮层匀浆40,000转/分钟的上清液组分进行凝胶过滤,得到两个组分:组分II具有“Ca(2+)加Mg(2+)-依赖性”磷酸二酯酶活性,组分III含有其调节剂。当二者同时存在时,微摩尔浓度的Ca(2+)和调节剂可刺激组分II的活性;仅当Ca(2+)浓度高于阈值(底物浓度为0.4 - 1微摩尔时约为2微摩尔)时,调节剂才刺激组分II的活性,且Ca(2+)的刺激作用依赖于调节剂的存在。文中讨论了一种可能性,即调节剂可能与本身无活性的酶可逆结合,形成有活性的酶 - 调节剂复合物,且Ca(2+)通过使这三种物质之间的平衡向形成有活性的酶 - 调节剂复合物的方向移动来刺激磷酸二酯酶的活性。虽然组分II可水解环磷酸腺苷(cAMP)和环磷酸鸟苷(cGMP),但后者的水解比前者更显著地受Ca(2+)和调节剂的影响,且“Ca(2+)加Mg(2+)-依赖性”磷酸二酯酶可能是一种cGMP酶。这一结论基于以下证据:(a) Ca(2+)对组分II水解cGMP的刺激作用比对cAMP的刺激作用更强。(b) 在Ca(2+)和调节剂存在的情况下,当与0.4微摩尔底物一起孵育时,组分II水解cGMP的速度比水解cAMP的速度快约8倍。(c) 水解cGMP达到最大刺激作用一半时所需的Ca(2+)浓度(4微摩尔)低于cAMP(8微摩尔)。(d) 在调节剂存在的情况下,Ca(2+)浓度从0.06微摩尔增加到12微摩尔,导致组分II水解cGMP的米氏常数(K(m))值从20微摩尔降至2微摩尔,同时最大反应速度(V(max))值增加4倍。在类似条件下,虽然V(max)值增加了7倍,但cAMP水解的K(m)值仅略有下降(90微摩尔 -> 50微摩尔)。当在调节剂存在的情况下增加Ca(2+)浓度时,cGMP水解动力学曲线的异常形状变得线性。调节剂似乎是一种蛋白质,但具有热稳定性。它可能与张首先描述的磷酸二酯酶蛋白激活剂相同。

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