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磷脂酰肌醇磷酸、磷脂酰肌醇二磷酸和磷酸肌醇鞘脂存在于质膜中,并刺激酿酒酵母的质膜H(+) -ATP酶。

Phosphatidylinositol phosphate, phosphatidylinositol bisphosphate, and the phosphoinositol sphingolipids are found in the plasma membrane and stimulate the plasma membrane H(+)-ATPase of Saccharomyces cerevisiae.

作者信息

Patton J L, Lester R L

机构信息

Department of Biochemistry, University of Kentucky, Lexington 40536.

出版信息

Arch Biochem Biophys. 1992 Jan;292(1):70-6. doi: 10.1016/0003-9861(92)90052-x.

Abstract

Several plasma membrane phospholipids have been studied for their ability to modulate the activity of the plasma membrane H(+)-ATPase of Saccharomyces cerevisiae. We show here that phosphatidylinositol phosphate (PIP), phosphatidylinositol bisphosphate (PIP2), and/or the phosphatidylinositol and PIP kinases are localized primarily in the plasma membrane. Previous in vivo studies with S. cerevisiae have shown that large, rapid, and reversible changes occur in the levels of PIP and PIP2 congruent with changes in cellular ATP levels. We demonstrate here that isolated plasma membranes exhibit the same changes in PIP and PIP2 content when they are supplied with or washed free of ATP. Using a mixed micellar assay we systematically studied the efficacy of the plasma membrane lipids in sustaining the activity of the plasma membrane H(+)-ATPase. We demonstrate for the first time that a number of plasma membrane glycerophospholipids effectively stimulate the ATPase, including PIP, PIP2, and cardiolipin. Phosphoinositol-containing sphingolipids, major components of the plasma membrane, are also shown to stimulate the ATPase at significantly lower levels than the glycerophospholipids and must also be considered as important effectors in vivo.

摘要

几种质膜磷脂已被研究其调节酿酒酵母质膜H(+) - ATP酶活性的能力。我们在此表明,磷脂酰肌醇磷酸(PIP)、磷脂酰肌醇二磷酸(PIP2)和/或磷脂酰肌醇及PIP激酶主要定位于质膜。先前对酿酒酵母的体内研究表明,PIP和PIP2水平会随着细胞ATP水平的变化而发生大的、快速的和可逆的变化。我们在此证明,当向分离的质膜提供ATP或洗去ATP时,它们的PIP和PIP2含量会出现相同的变化。使用混合胶束测定法,我们系统地研究了质膜脂质维持质膜H(+) - ATP酶活性的功效。我们首次证明,许多质膜甘油磷脂能有效刺激ATP酶,包括PIP、PIP2和心磷脂。含磷酸肌醇的鞘脂是质膜的主要成分,也被证明能以比甘油磷脂低得多的水平刺激ATP酶,并且在体内也必须被视为重要的效应物。

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