Redman C M
J Cell Biol. 1971 Apr;49(1):35-49. doi: 10.1083/jcb.49.1.35.
Erythrocyte membranes incorporated labeled phosphate from gamma-adenosine triphosphate (AT(32)P) into phosphatidic acid and the polyphosphoinositides. Inositol-(3)H and palmitate-(14)C were also incorporated into the phospholipids but alpha-glycerophosphate-(32)P was not. The incorporation of gamma-AT(32)P into phospholipids was increased when the erythrocyte ghosts were incubated in hypotonic media which lysed the cells. Lysis had little or no effect on the incorporation of inositol-(3)H and palmitate-(14)C into the phospholipids. If erythrocyte membranes were prepared in 1 mM ethylenediaminetetraacetate (EDTA), instead of 1 mM MgCl(2), then the tonicity of the incubating medium did not influence the incorporation of gamma-AT(32)P into the phospholipids. Erythrocyte ghosts, prepared by lysis in water, EDTA, or 1 mM calcium, lead, mercury, zinc, or cadmium, failed to reconstitute when placed in isotonic medium, inasmuch as they did not retain potassium against a chemical gradient. Ghosts prepared by lysis in 1 mM magnesium, barium, or strontium could be reconstituted. Ghosts which failed to reconstitute incorporated more labeled phosphate from gamma-AT(32)P into the phospholipids than did intact or reconstituted ghosts. The larger incorporation of labeled phosphate by leaky ghosts was not due to a greater entrance of gamma-AT(32)P into those cells. Primaquine phosphate and digitonin, at concentrations which are known to cause cells to form smaller vesicles or to lyse cells by removing cholesterol, did not increase the incorporation of labeled phosphate into the phospholipids. It is suggested that the increased metabolism of phospholipids may be involved in a membrane repair mechanism.
红细胞膜将来自γ-三磷酸腺苷(AT(32)P)的标记磷酸盐掺入磷脂酸和多磷酸肌醇中。肌醇-(3)H和棕榈酸-(14)C也被掺入磷脂中,但α-甘油磷酸-(32)P未被掺入。当红细胞血影在使细胞裂解的低渗介质中孵育时,γ-AT(32)P掺入磷脂的量增加。细胞裂解对肌醇-(3)H和棕榈酸-(14)C掺入磷脂的影响很小或没有影响。如果红细胞膜是在1 mM乙二胺四乙酸(EDTA)而非1 mM氯化镁(MgCl(2))中制备的,那么孵育介质的张力不会影响γ-AT(32)P掺入磷脂。通过在水、EDTA或1 mM钙、铅、汞、锌或镉中裂解制备的红细胞血影,当置于等渗介质中时无法重构,因为它们不能逆着化学梯度保留钾。通过在1 mM镁、钡或锶中裂解制备的血影可以重构。未能重构的血影比完整或重构的血影将更多来自γ-AT(32)P的标记磷酸盐掺入磷脂中。渗漏血影对标记磷酸盐的更大掺入并非由于γ-AT(32)P更多地进入这些细胞。已知会使细胞形成较小囊泡或通过去除胆固醇使细胞裂解的磷酸伯氨喹和洋地黄皂苷,并未增加标记磷酸盐掺入磷脂的量。有人提出磷脂代谢增加可能参与了一种膜修复机制。