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脂肪细胞膜腺苷酸环化酶被GTP的鏻盐和氨基磷酸酯类似物不可逆激活的动力学1

Kinetics of irreversible activation of adenylate cyclase of fat cell membranes by phosphonium and phosphoramidate analogs of gtp1.

作者信息

Jacobs S, Bennett V, Cuatrecasas P

出版信息

J Cyclic Nucleotide Res. 1976;2(4):205-23.

PMID:184121
Abstract

The ability of guanylylimidodiphosphate (GMP=P(NH)P) and guanylylmethylenediphosphonate (GMP-P(CH2)P) to activate adenylate cyclase activity has been studied by incubating these analogs with fat cell membranes followed by thorough washing of the membranes before assay of enzyme activity. GMP-P(NH)P is hydrolyzed by membrane preparations from several tissues. A pyruvate kinase regenerating system maintains the concentration of GMP-P(NH)P and thereby augments the ability of suboptimal concentrations of GMP-P(NH)P to activate adenylate cyclase. GTP inhibits activation of fat cell membrane adenylate cyclase by GMP-P(NH)P but this inhibition is overcome by time. This is consistent with the virtually irreversible nature of the GMP-P(NH)P activation, and with the inability of GTP to reverse the stimulated state of the enzyme. Although the initial rate of enzyme activation is highly dependent on the concentration of GMP-P(NH)P, with increasing times of incubation nearly the same maximal extent of activation is seen over a wide range of concentrations. Thus, it is not possible to estimate true affinity constants (at equilibrium) for GMP-P(NH)P, as anticipated from the virtually irreversible character of the activation process.

摘要

通过将鸟苷酰亚胺二磷酸(GMP=P(NH)P)和鸟苷酰亚甲基二磷酸(GMP-P(CH2)P)与脂肪细胞膜一起孵育,然后在测定酶活性之前对膜进行彻底洗涤,研究了它们激活腺苷酸环化酶活性的能力。GMP-P(NH)P可被几种组织的膜制剂水解。丙酮酸激酶再生系统维持GMP-P(NH)P的浓度,从而增强次优浓度的GMP-P(NH)P激活腺苷酸环化酶的能力。GTP抑制GMP-P(NH)P对脂肪细胞膜腺苷酸环化酶的激活,但这种抑制会随着时间被克服。这与GMP-P(NH)P激活的几乎不可逆性质以及GTP无法逆转酶的刺激状态是一致的。尽管酶激活的初始速率高度依赖于GMP-P(NH)P的浓度,但随着孵育时间的增加,在很宽的浓度范围内都能看到几乎相同的最大激活程度。因此,正如从激活过程的几乎不可逆特性所预期的那样,不可能估计出GMP-P(NH)P的真实亲和常数(在平衡时)。

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