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粟酒裂殖酵母纯化的质膜ATP酶形成一种磷酸化中间体。

The purified plasma membrane ATPase of the yeast Schizosaccharomyces pombe forms a phosphorylated intermediate.

作者信息

Amory A, Foury F, Goffeau A

出版信息

J Biol Chem. 1980 Oct 10;255(19):9353-7.

PMID:6447701
Abstract

An acid slab gel electrophoresis method of high-resolving power allows detection of a phosphorylated form in the purified ATPase of the yeast Schizosaccharomyces pombe and identification of this catalytic intermediate among the different phosphopeptides of a plasma membrane preparation. At a maximum steady state rate of MgATP hydrolysis by the membrane-bound ATPase, 20 to 40% of the ATPase subunits of 100,000 daltons are in a phosphorylated form, while only 0.8% of the subunits of the purified ATPase are phosphorylated under the same conditions. The phosphorylated intermediate reaches the steady state level in less than 2 s and rapidly turns over. The phosphorylated substance is cleaved by hydroxylamine and is relatively stable in acids but is readily hydrolyzed in alkaline or in acid alcoholic media. These results suggest that the intermediate is an acylphosphate. The phosphorylation reaction has an apparent Km value of 3.0 mM MgATP for the plasma membrane-bound ATPase and 0.6 mM MgATP for the purified ATPase. Plasma membranes contain several other minor phosphorylated components whose kinetic behavior is typical of phosphorylation by protein kinase. Artifactual production of two forms of the ATPase by phenylmethanesulfonyl fluoride-sensitive proteases liberated during cell disruption is also demonstrated.

摘要

一种高分辨率的酸性平板凝胶电泳方法能够检测粟酒裂殖酵母纯化的ATP酶中的磷酸化形式,并能在质膜制剂的不同磷酸肽中鉴定出这种催化中间体。在膜结合ATP酶水解MgATP的最大稳态速率下,100,000道尔顿的ATP酶亚基中有20%至40%处于磷酸化形式,而在相同条件下,纯化的ATP酶亚基中只有0.8%被磷酸化。磷酸化中间体在不到2秒内达到稳态水平并迅速周转。磷酸化物质可被羟胺裂解,在酸性条件下相对稳定,但在碱性或酸性酒精介质中容易水解。这些结果表明该中间体是一种酰基磷酸酯。对于质膜结合的ATP酶,磷酸化反应的表观Km值为3.0 mM MgATP,对于纯化的ATP酶为0.6 mM MgATP。质膜含有其他几种少量的磷酸化成分,其动力学行为是蛋白激酶磷酸化的典型表现。还证明了在细胞破碎过程中释放的苯甲基磺酰氟敏感蛋白酶会人为产生两种形式的ATP酶。

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