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阳离子对海胆精子鸟苷酸环化酶的影响。

Effects of cations on guanylate cyclase of sea urchin sperm.

作者信息

Garbers D L, Dyer E L, Hardman J G

出版信息

J Biol Chem. 1975 Jan 25;250(2):382-7.

PMID:234426
Abstract

Mn2+ and to some degree Fe2+, but not Mg+, Ca2+, ba2+, Sr2+, Co2+, Ni2+, La3+, or Fe3+ were able to serve as effective metal cofactors for sea urchin sperm guanylate cyclase. The apparent Michaelis constant for Mn2+ in the presence of 0.25 mM MnGTP was 0.23 mM. In the presence of a fixed free mn2+ concentration, variation in mngTP resulted in sigmoid velocity-substrate plots and in reciprocal plots that were concave upward. These positive cooperative patterns were observed at both pH 7.0 and 7.8 and in the presence or absence of Triton X-100. When Mn2+ and GTP were equimolar, Ca2+, Ba2+, Sr2+, and Mg2+ increased apparent guanylate cyclase activity. This increase in enzyme activity at least could be accounted for partially by an increase in free Mn2+ concentration caused by the complex formation of GTP with the added metals. However, even at relatively low GTP concentrations and with Mn2+ concentrations in excess of GTP, Ca2+, Sr2+, and Ba2+ significantly increased guanosine 3':5'-monophosphate production. As the total GTP concentration was increased, the degree of stimulation in the presence of Ca2+ decreased, despite maintenance of a fixed total concentration of Ca2+ and a fixed free concentration of Mn2+, suggesting that the concentration of CaGTP and MnGTP were determining factors in the observed response. The concave upward reciprocal plots of velocity against MnGTP concentration were changed to linear plots in the presence of CaGTP or SrGTP. These results suggest that sea urchin sperm guanylate cyclase contains multiple nucleotide binding sites and that stimulation of guanosine 3':5'-monophosphate synthesis by Ca2+, Sr2+, and perhaps other metals may reflect interaction of a metal-GTP complex with enzyme as either an effector or a substrate.

摘要

Mn2+以及在一定程度上的Fe2+,但Mg+、Ca2+、Ba2+、Sr2+、Co2+、Ni2+、La3+或Fe3+不能作为海胆精子鸟苷酸环化酶的有效金属辅因子。在存在0.25 mM MnGTP的情况下,Mn2+的表观米氏常数为0.23 mM。在固定的游离Mn2+浓度存在时,MnGTP的变化导致S形速度-底物图以及向上凹的倒数图。在pH 7.0和7.8时以及在有或没有 Triton X-100的情况下都观察到了这些正协同模式。当Mn2+和GTP等摩尔时,Ca2+ +、Ba2+、Sr2+和Mg2+会增加表观鸟苷酸环化酶活性。酶活性的这种增加至少可以部分归因于GTP与添加金属形成复合物导致游离Mn2+浓度的增加。然而,即使在相对较低的GTP浓度且Mn2+浓度超过GTP时,Ca2+、Sr2+和Ba2+也会显著增加3':5'-环磷酸鸟苷的产生。随着总GTP浓度的增加,尽管Ca2+的总浓度保持固定且游离Mn2+浓度保持固定,但在Ca2+存在下的刺激程度降低,这表明CaGTP和MnGTP的浓度是观察到的反应的决定因素。在存在CaGTP或SrGTP的情况下,速度对MnGTP浓度的向上凹的倒数图变为线性图。这些结果表明海胆精子鸟苷酸环化酶含有多个核苷酸结合位点,并且Ca2+、Sr2+以及可能其他金属对3':5'-环磷酸鸟苷合成的刺激可能反映了金属-GTP复合物作为效应物或底物与酶的相互作用。

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