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两种不同的钙离子转运系统与人体血小板的质膜和内膜相关。

Two different Ca2+ transport systems are associated with plasma and intracellular human platelet membranes.

作者信息

Enouf J, Bredoux R, Bourdeau N, Levy-Toledano S

出版信息

J Biol Chem. 1987 Jul 5;262(19):9293-7.

PMID:2954959
Abstract

Platelet plasma and intracellular membrane fractions were isolated from a mixed membrane fraction after sucrose cushion centrifugation. Their previous identification through biochemical and immunological characterization is now confirmed by sodium dodecyl sulfate electrophoresis of the membrane proteins which reveals a different protein profile. The two associated calcium transport systems showed a different time course and exhibited different oxalate sensitivity. The plasma membranes are not permeable to potassium oxalate but the Ca2+ uptake was stimulated by potassium oxalate in intracellular membranes. We then focused on the study of the plasma membrane-associated Ca2+-activated ATPase which shows the following characteristics: a linearity in the time course until 30 min, an apparent affinity toward calcium of about 10(-7) M without detectable inhibition at higher concentrations, a maximal activity at pH 8, a high ATP requirement because the maximal response was obtained with 200 microM, and a high specificity toward ATP as energy donor. Taken together, these studies indicate the possible involvement of both a plasma membrane and a dense tubular system Ca2+-ATPase in the regulation of Ca2+ concentration in human platelets.

摘要

通过蔗糖垫层离心从混合膜组分中分离出血小板血浆和细胞内膜组分。之前通过生化和免疫特性鉴定,现在通过膜蛋白的十二烷基硫酸钠电泳得以证实,该电泳显示出不同的蛋白质谱。这两种相关的钙转运系统呈现出不同的时间进程,并且对草酸盐的敏感性不同。质膜对草酸钾不可渗透,但细胞内膜中的钙离子摄取受到草酸钾的刺激。然后我们专注于研究与质膜相关的钙离子激活的ATP酶,其具有以下特性:直到30分钟时间进程呈线性,对钙的表观亲和力约为10^(-7) M,在较高浓度下未检测到抑制作用,在pH 8时具有最大活性,对ATP需求较高,因为在200微摩尔时获得最大反应,并且对作为能量供体的ATP具有高度特异性。综上所述,这些研究表明质膜和致密管状系统的钙离子ATP酶可能都参与了人类血小板中钙离子浓度的调节。

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