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福斯高林对肝细胞膜腺苷酸环化酶的调节作用。

Forskolin regulation of liver membrane adenylyl cyclase.

作者信息

Birnbaumer L, Stengel D, Desmier M, Hanoune J

出版信息

Eur J Biochem. 1983 Oct 17;136(1):107-12. doi: 10.1111/j.1432-1033.1983.tb07712.x.

Abstract

The effects of forskolin on rat liver plasma membrane adenylyl cyclase were studied. The diterpene stimulated the Vmax of the enzyme system with apparent Km values of 3-5 microM. Stimulations were marked both in the absence (20-fold over control) as well as in the presence of various stimulators such as GTP, GuoPP[NH]P, NaF alone or in combination with glucagon. Except with GTP, where stimulations of activities by forskolin and the nucleotide were synergistic (more than additive), stimulations of combinations of GuoPP[NH]P, NaF or glucagon with forskolin were additive. Forskolin did not alter significantly the apparent Km values of the enzyme for MgATP or MnATP or the apparent Ka values (concentrations giving stimulations that are 50% of maximum) for Mg or Mn ions, GTP, GuoPP[NH]P or NaF. Forskolin caused a decrease in the concentration of glucagon required for half-maximal stimulation from 5 microM to 1.5 microM. Except for this effect on the Ka for the glucagon, the only kinetic parameter altered was the Vmax under all conditions tested. Although proteolysis stimulated liver membrane adenylyl cyclase under control conditions, it did not enhance forskolin-stimulated activities. More extensive proteolysis, which resulted in decreased activities in the absence of forskolin, also resulted in reduced forskolin-stimulated activities. 'Uncoupling' of the guanine-nucleotide-binding regulatory component, that mediates guanine nucleotide stimulation by addition of 30 mM MnCl2, did not result in 'uncoupling' of forskolin stimulation. The data indicate that the diterpene forskolin stimulates adenylyl cyclase activity by a novel mechanism that differs from that by which NaF or guanylyl nucleotides affect this membrane-bound system and that the diterpene should be a useful tool with which to explore as yet unrecognized modes of regulation of cyclic AMP production.

摘要

研究了福斯高林对大鼠肝细胞膜腺苷酸环化酶的影响。该二萜类化合物刺激了酶系统的Vmax,其表观Km值为3 - 5微摩尔。在不存在各种刺激剂(如GTP、郭霍氏核苷酸、单独的NaF或与胰高血糖素联合使用)的情况下(比对照高20倍)以及存在这些刺激剂时,刺激作用都很明显。除了GTP,福斯高林和核苷酸对活性的刺激是协同的(超过相加作用),郭霍氏核苷酸、NaF或胰高血糖素与福斯高林组合的刺激是相加的。福斯高林对酶作用于MgATP或MnATP的表观Km值以及对Mg或Mn离子、GTP、郭霍氏核苷酸或NaF的表观Ka值(产生最大刺激的50%时的浓度)没有显著改变。福斯高林使半最大刺激所需的胰高血糖素浓度从5微摩尔降至1.5微摩尔。除了对胰高血糖素的Ka有这种影响外,在所有测试条件下,唯一改变的动力学参数是Vmax。虽然在对照条件下蛋白水解刺激肝细胞膜腺苷酸环化酶,但它并没有增强福斯高林刺激的活性。更广泛的蛋白水解在不存在福斯高林时导致活性降低,也导致福斯高林刺激的活性降低。通过添加30 mM MnCl2介导鸟嘌呤核苷酸刺激的鸟嘌呤核苷酸结合调节成分的“解偶联”,并没有导致福斯高林刺激的“解偶联”。数据表明,二萜类化合物福斯高林通过一种不同于NaF或鸟苷酸影响该膜结合系统的新机制刺激腺苷酸环化酶活性,并且该二萜类化合物应该是探索尚未被认识的环磷酸腺苷产生调节模式的有用工具。

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