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钙离子对兔血小板中乙醇胺磷酸转移酶和胆碱磷酸转移酶的影响。

Effects of Ca2+ on ethanolaminephosphotransferase and cholinephosphotransferase in rabbit platelets.

作者信息

Taniguchi S, Morikawa S, Hayashi H, Fujii K, Mori H, Fujiwara M, Fujiwara M

出版信息

J Biochem. 1986 Aug;100(2):485-91. doi: 10.1093/oxfordjournals.jbchem.a121737.

Abstract

The effects of Ca2+ on ethanolaminephosphotransferase [EC 2.7.8.1] and cholinephosphotransferase [EC 2.7.8.2] activities in rabbit platelet membranes were studied using endogenous diglyceride and CDP-[3H]ethanolamine or CDP-[14C]choline as substrates. Both transferases required Mn2+, Co2+, or Mg2+ as a metal cofactor and the optimal concentrations of the metals for both activities were about 5, 10, and 5 mM, respectively. When 5 mM Mg2+ was used as a cofactor, both transferase activities were inhibited by a low concentration of Ca2+ (half maximal inhibition at approx. 15 microM). In the presence of 5 mM Mn2+, however, approx. 5 mM Ca2+ was required to produce half maximal inhibition. The Ca2+-induced inhibition was reversible and the rate of the inhibition was not affected either by the concentrations of the CDP-compound or by exogenously added diacylglycerol. The relationship between Ca2+ and both Mg2+ and Mn2+ on the transferase activities was competitive. 45Ca2+ binding (and/or uptake) to the platelet membranes was inhibited by Mn2+, Mg2+, and Co2+, in a concentration-dependent manner. However, the inhibitory effects of the three metal ions on the total Ca2+ binding (and/or uptake) did not correlate with the activation of both transferase activities by the three metal ions in the presence of Ca2+. These results suggest that both transferase activities are regulated by low concentrations of Ca2+ in the presence of optimal concentrations of Mg2+, and that the inhibition is mediated directly by Ca2+, which interacts with a specific metal cofactor binding site(s) of the transferases.

摘要

以内源性甘油二酯和CDP-[3H]乙醇胺或CDP-[14C]胆碱为底物,研究了Ca2+对兔血小板膜中乙醇胺磷酸转移酶[EC 2.7.8.1]和胆碱磷酸转移酶[EC 2.7.8.2]活性的影响。两种转移酶都需要Mn2+、Co2+或Mg2+作为金属辅因子,两种活性的金属最佳浓度分别约为5、10和5 mM。当使用5 mM Mg2+作为辅因子时,两种转移酶活性均受到低浓度Ca2+的抑制(约15 microM时半数最大抑制)。然而,在存在5 mM Mn2+的情况下,约5 mM Ca2+才能产生半数最大抑制。Ca2+诱导的抑制是可逆的,抑制速率不受CDP化合物浓度或外源添加的二酰基甘油的影响。Ca2+与Mg2+和Mn2+对转移酶活性的关系是竞争性的。Mn2+、Mg2+和Co2+以浓度依赖的方式抑制45Ca2+与血小板膜的结合(和/或摄取)。然而,这三种金属离子对总Ca2+结合(和/或摄取)的抑制作用与在Ca2+存在下这三种金属离子对两种转移酶活性的激活作用不相关。这些结果表明,在最佳浓度的Mg2+存在下,两种转移酶活性均受低浓度Ca2+的调节,且抑制作用直接由Ca2+介导,Ca2+与转移酶的特定金属辅因子结合位点相互作用。

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