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肌浆网囊泡中钙和镁对ATP及ITP介导的磷酸化作用的调节

Calcium and magnesium regulation of phosphorylation by ATP and ITP in sarcoplasmic reticulum vesicles.

作者信息

Souza D O, de Meis L

出版信息

J Biol Chem. 1976 Oct 25;251(20):6355-9.

PMID:185211
Abstract

Membrane phosphorylation and nucleoside triphosphatase activity of sarcoplasmic reticulum vesicles isolated from rabbit skeletal muscle were studied using ATP and ITP as substrates. The Ca2+ concentration was varied over a range large enough to saturate either the high affinity Ca2+-binding site or both high and low affinity binding sites. In intact vesicles, which are able to accumulate Ca2+, the steady state level of enzyme phosphorylated by either ATP or ITP is already high in 0.02 mM Ca2+ and does not vary as the Ca2+ concentration is increased to 10 mM. Essentially the same pattern of membrane phosphorylation by ATP is observed when leaky vesicles, which are unable to accumulate Ca2+, are used. However, for leaky vesicles, when ITP is used as substrate, the phosphoenzyme level increases 3- to 4-fold when the Ca2+ concentration is raised from 0.02 to 20 mM. When Mg2+ is omitted from the assay medum, the degree of membrane phosphorylation by ATP varies with Ca2+ in the same way as when ITP is used in the presence of Mg2+. Membrane phosphorylation of leaky vesicles by either ATP or ITP is observed in the absence of added Mg2+. When these vesicles are incubated in media containing ITP and 0.1 mM Ca2+, addition of Mg2+ up to 10 mM simultaneously decreases the steady state level of phosphoenzyme and increases the rate of ITP hydrolysis. When ATP is used, the addition of 10 mM Mg2+ increases both the steady state level of phosphoenzyme and the rate of ATP hydrolysis. When the Ca2+ concentration is raised to 10 or 20 mM, the degree of membrane phosphorylation by either ATP or ITP is maximal even in the absence of added Mg2+ and does not vary with the addition of 10 mM Mg2+. In these conditions the ATPase and ITPase activities are activated by Mg2+, although not to the level observed in 0.1 mM Ca2+. An excess of Mg2+ inhibits both the rate of hydrolysis and membrane phosphorylation by either ATP or ITP.

摘要

以ATP和ITP为底物,研究了从兔骨骼肌分离的肌浆网囊泡的膜磷酸化和核苷三磷酸酶活性。Ca2+浓度在足够大的范围内变化,足以使高亲和力Ca2+结合位点或高、低亲和力结合位点均饱和。在能够积累Ca2+的完整囊泡中,由ATP或ITP磷酸化的酶的稳态水平在0.02 mM Ca2+时就已经很高,并且随着Ca2+浓度增加到10 mM而没有变化。当使用不能积累Ca2+的渗漏囊泡时,观察到ATP引起的膜磷酸化基本相同。然而,对于渗漏囊泡,当使用ITP作为底物时,当Ca2+浓度从0.02 mM提高到20 mM时,磷酸化酶水平增加3至4倍。当测定介质中省略Mg2+时,ATP引起的膜磷酸化程度与存在Mg2+时使用ITP时一样随Ca2+而变化。在不添加Mg2+的情况下观察到ATP或ITP引起的渗漏囊泡的膜磷酸化。当这些囊泡在含有ITP和0.1 mM Ca2+的介质中孵育时,添加高达10 mM的Mg2+同时降低磷酸化酶的稳态水平并增加ITP水解速率。当使用ATP时,添加10 mM Mg2+会增加磷酸化酶的稳态水平和ATP水解速率。当Ca2+浓度提高到10或20 mM时,即使不添加Mg2+,ATP或ITP引起的膜磷酸化程度也是最大的,并且不随添加10 mM Mg2+而变化。在这些条件下,ATP酶和ITP酶活性被Mg2+激活,尽管未达到在0.1 mM Ca2+中观察到的水平。过量的Mg2+抑制ATP或ITP的水解速率和膜磷酸化。

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