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细胞膜磷脂与蛋白质对化学探针的差异反应。

Differential reaction of cell membrane phospholipids and proteins with chemical probes.

作者信息

Marinetti G V, Love R

出版信息

Chem Phys Lipids. 1976 Jul;16(4):239-54. doi: 10.1016/0009-3084(76)90019-0.

Abstract

The major aims of this study were to determine the degree of phospholipid asymmetry and the neighbor analysis of phospholipids in different types of cell membranes. For this study a penetrating probe (FDNB), a non-penetrating probe (TNBS) and a cross-linking probe (DFDNB) were used. The reaction of hemoglobin, membrane protein and membrane PE and PS of erythrocytes with DFNB and TNBS was studied over a concentration range of 0.5 to 10 mM probe. TNBS reacts to an extremely small extend with hemoglobin over the concentration range 0.4 to 4 mM whereas FDNB reacts with hemoglobin to a very large extent (50 fold more than TNBS). The reaction of membrane protein of intact erythrocytes reaches a sharp plateau at 1 mM TNBS whereas the reaction of membrane protein goes to a much larger extent with FDNB with no plateau seen up to 4 mM FDNB. This data shows that TNBS does not significantly penetrate into the cell under our conditions whereas FDNB does penetrate into the cell. The results show that there are four fold more reactive sites on proteins localized on the inner surface of the erythrocyte membrane as compared to the outer surface. TNBS at 0.5 to 2 mM concentration does not label membrane PS and labels membrane PE to a small extent. The reaction of PE with TNBS shows an initial plateau at 2 mM probe and a second slightly higher plateau between 4 to 10 mM probe. TNBS from 0.5-2.0 mM does not react with PS, but between 3 to 10 mM concentration, a very small amount of PS reacts with TNBS. Hence above 2 mM TNBS or FDNB a perturbation occurs in the membrane such that more PE and PS are exposed and react with these probes. These results demonstrate that essentially no PS is localized on the outer surface of the membrane and only 5% of the total membrane PE is localized on the outer surface of the erythrocyte membrane. TNBS and FDNB were reacted with yeast, E. coli, and Acholeplasma cells. With yeast cells, FDNB reacts to a much larger extent with PE than does TNBS, indicating that FDNB penetrates into the cell and labels more PE molecules. With E. coli, but not with erythrocytes or yeast cells, phospholipase A activity was very pronounced at pH 8.5 giving rise to a large amount of DNP-GPE from DNP-PE. A phosphodiesterase was also present which hydrolyized DNP-GPE to DNP-ethanolamine. The multilayered structure of the E. coli cell envelop did not permit a definitive interpretation of the results. It is clear, however, that TNBS and FDNB react to a different extent with PE in this cell. The Acholeplasma membrane had no detectable PE or PS but contains amino acid esters of phosphatidylglycerol. The reaction of these components with TNBS and FDNB indicate that these aminoacyl-PG are localized on both surfaces of the membrane, with 31% being on the outer surface and 69% on the inner surface...

摘要

本研究的主要目的是确定不同类型细胞膜中磷脂不对称程度以及磷脂的邻位分析。为此研究使用了一种穿透性探针(FDNB)、一种非穿透性探针(TNBS)和一种交联探针(DFDNB)。在0.5至10 mM探针浓度范围内,研究了血红蛋白、红细胞膜蛋白以及红细胞膜PE和PS与DFNB和TNBS的反应。在0.4至4 mM浓度范围内,TNBS与血红蛋白的反应程度极小,而FDNB与血红蛋白的反应程度很大(比TNBS大50倍)。完整红细胞膜蛋白在1 mM TNBS时反应达到一个尖锐的平台期,而膜蛋白与FDNB的反应程度更大,在4 mM FDNB之前未出现平台期。该数据表明,在我们的实验条件下TNBS不会显著穿透细胞,而FDNB会穿透细胞。结果显示,红细胞膜内表面定位的蛋白质上的反应位点比外表面多四倍。0.5至2 mM浓度的TNBS不会标记膜PS,仅会少量标记膜PE。PE与TNBS的反应在2 mM探针时显示出一个初始平台期,在4至10 mM探针之间有第二个略高的平台期。0.5 - 2.0 mM的TNBS不与PS反应,但在3至10 mM浓度之间,极少量的PS会与TNBS反应。因此,在2 mM以上的TNBS或FDNB作用下,膜会发生扰动,使得更多的PE和PS暴露并与这些探针反应。这些结果表明,基本上没有PS定位在膜的外表面,红细胞膜总PE中只有5%定位在膜的外表面。TNBS和FDNB与酵母、大肠杆菌和无胆甾原体细胞进行了反应。对于酵母细胞,FDNB与PE的反应程度比TNBS大得多,表明FDNB穿透细胞并标记了更多的PE分子。对于大肠杆菌,在pH 8.5时磷脂酶A活性非常显著,能从DNP - PE产生大量的DNP - GPE,但红细胞或酵母细胞则不然。还存在一种磷酸二酯酶,可将DNP - GPE水解为DNP - 乙醇胺。大肠杆菌细胞包膜的多层结构使得无法对结果进行明确解读。然而,很明显,TNBS和FDNB在这种细胞中与PE的反应程度不同。无胆甾原体细胞膜中未检测到PE或PS,但含有磷脂酰甘油的氨基酸酯。这些成分与TNBS和FDNB的反应表明这些氨酰 - PG定位在膜的两个表面,其中31%在外表面,69%在内表面……

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