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脂质和蛋白质对膜表面电荷的贡献。用阳离子化和阴离子化铁蛋白进行的电子显微镜研究。

Contributions of lipids and proteins to the surface charge of membranes. An electron microscopy study with cationized and anionized ferritin.

作者信息

Burry R W, Wood J G

出版信息

J Cell Biol. 1979 Sep;82(3):726-41. doi: 10.1083/jcb.82.3.726.

Abstract

The surface charge of cultured neurons was investigated with the electron microscope markers anionized ferritin (AF) and cationized ferritin (CF). To determine which membrane components could react with the markers, model reactions were used. Both protein-coated Sepharose beads and lipid vesicles were reacted at physiological pH. Results with these model reactions indicate that the following groups may contribute to the surface charge: acidic groups--the sialic acid of both glycoproteins and gangliosides, the carboxyl group of proteins, and the phosphates of phospholipids; basic groups--the amines of proteins. The effect of chemical fixation on the surface charge was investigated. Glutaraldehyde fixation was shown to increase the charge of neutral proteins but not by a mechanism involving unbound aldehydes. Glutaraldehyde fixation of phospholipid vesicles in the presence of CF showed that amine-containing phospholipids were cross-linked to CF. This cross-linkage was seen with the electron microscope as the clumping of CF and the burying of CF in the membrane. Paraformaldehyde fixation had a lesser effect on the charge of proteins but did react with phospholipids as did glutaraldehyde. It is concluded that at physiological pH: (a) most of the charged proteins and lipids on cell surface can contribute to the membrane surface charge, and (b) the membrane surface charge of cells can be greatly changed by chemical fixation.

摘要

利用电子显微镜标记物阴离子铁蛋白(AF)和阳离子铁蛋白(CF)对培养神经元的表面电荷进行了研究。为了确定哪些膜成分能够与这些标记物发生反应,采用了模型反应。蛋白质包被的琼脂糖珠和脂质囊泡在生理pH值下都进行了反应。这些模型反应的结果表明,以下基团可能对表面电荷有贡献:酸性基团——糖蛋白和神经节苷脂中的唾液酸、蛋白质的羧基以及磷脂的磷酸基团;碱性基团——蛋白质的胺基。研究了化学固定对表面电荷的影响。结果表明,戊二醛固定可增加中性蛋白质的电荷,但并非通过涉及未结合醛的机制。在CF存在的情况下对磷脂囊泡进行戊二醛固定显示,含胺磷脂与CF发生了交联。在电子显微镜下,这种交联表现为CF的聚集以及CF埋入膜中。多聚甲醛固定对蛋白质电荷的影响较小,但与戊二醛一样能与磷脂发生反应。得出的结论是,在生理pH值下:(a)细胞表面大多数带电荷的蛋白质和脂质可对膜表面电荷有贡献,并且(b)细胞的膜表面电荷可因化学固定而发生显著变化。

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