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鲍鱼精子中钙调蛋白刺激的腺苷酸环化酶的特性研究。

Characterization of a calmodulin-stimulated adenylate cyclase from abalone spermatozoa.

作者信息

Kopf G S, Vacquier V D

出版信息

J Biol Chem. 1984 Jun 25;259(12):7590-6.

PMID:6429134
Abstract

Abalone sperm adenylate cyclase activity is particulate in nature and displays a high Mg2+-supported activity (Mg2+/Mn2+ = 0.8) as compared to other sperm adenylate cyclases. Approximately 90% of the enzyme activity in crude homogenates is inhibited by EGTA in a concentration-dependent manner which is overcome by added micromolar free Ca2+. The EGTA-inhibited Ca2+-stimulated enzyme activity is also inhibited by phenothiazines. Added calmodulin, however, has no effect on enzyme activity prepared from crude homogenates. Preparation of a twice EGTA-extracted 48,000 X g pellet fraction yields a particulate enzyme activity that can be stimulated 10-65% by added calmodulin in the presence of micromolar free Ca2+. Detergent extraction (1% Lubrol PX) of the EGTA-washed 48,000 X g pellet solubilizes 2-5% of the total particulate adenylate cyclase activity, and this solubilized enzyme is activated up to 125% by calmodulin. The ability of the different enzyme preparations to be stimulated by calmodulin is inversely proportional to the endogenous calmodulin concentration. Calmodulin stimulation of the Lubrol PX-solubilized enzyme is specific to this Ca2+-binding protein and is mediated as an effect on the velocity of the enzyme. This stimulation is completely Ca2+ dependent and is fully reversible. These data suggest that the control of sperm cAMP synthesis by changes in Ca2+ conductance may be mediated via this Ca2+-binding protein.

摘要

鲍鱼精子腺苷酸环化酶活性本质上是颗粒性的,与其他精子腺苷酸环化酶相比,显示出高的镁离子支持活性(镁离子/锰离子 = 0.8)。粗匀浆中约90%的酶活性被乙二醇双四乙酸(EGTA)以浓度依赖的方式抑制,添加微摩尔游离钙离子可克服这种抑制。EGTA抑制的钙离子刺激的酶活性也被吩噻嗪抑制。然而,添加钙调蛋白对粗匀浆制备的酶活性没有影响。制备两次经EGTA提取的48,000×g沉淀组分,可得到一种颗粒性酶活性,在存在微摩尔游离钙离子的情况下,添加钙调蛋白可使其刺激10% - 65%。用洗涤剂(1% Lubrol PX)提取经EGTA洗涤的48,000×g沉淀,可溶解总颗粒腺苷酸环化酶活性的2% - 5%,这种溶解的酶被钙调蛋白激活高达125%。不同酶制剂被钙调蛋白刺激的能力与内源性钙调蛋白浓度成反比。Lubrol PX溶解的酶受钙调蛋白刺激对这种钙离子结合蛋白具有特异性,并且作为对酶速度的影响而介导。这种刺激完全依赖钙离子且完全可逆。这些数据表明,通过钙离子电导率变化对精子环磷酸腺苷(cAMP)合成的控制可能通过这种钙离子结合蛋白介导。

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