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[pH值变化作用下红细胞膜结构改变的机制]

[Mechanisms of the structural changes in erythrocyte membranes under the action of a shift in pH].

作者信息

Kunitsyn V G, Ostrovskaia T A, Fedenkov V I

出版信息

Tsitologiia. 1979 Feb;21(2):207-10.

PMID:34908
Abstract

The effect of pH shifts (5--10) on erythrocyte "ghosts" has been studied using the IR spectroscopy. The process of regulation has been shown to take place within pH 7.15--8 range involving both protein (transition testified by absorption band changes 1520, 1540, 1635, 1645, 1585, 1696, 3305 CM-1) and lipid membrane components testified by absorption band splits 1745, 1470, 1380, 720 AND 1242 cm-1. The transition from a lesser to a higher regulating state of membrane structure happens unevenly, since the above changes take place within the narrow pH 7.15--8 interval, near the homeostase limit, being never observed at pH 5--7.15 or 8--10. It is supposed that the increase in regulation of both protein, phospholipid and lipid membrane fields is of phasic nature which presumably constitutes the basis for pH action mechanism as a regulation factor.

摘要

利用红外光谱研究了pH值变化(5 - 10)对红细胞“血影”的影响。已表明调节过程发生在pH 7.15 - 8范围内,涉及蛋白质(通过1520、1540、1635、1645、1585、1696、3305 cm⁻¹处吸收带变化证实的转变)和脂质膜成分(通过1745、1470、1380、720和1242 cm⁻¹处吸收带分裂证实)。膜结构从较低调节状态向较高调节状态的转变是不均匀的,因为上述变化发生在狭窄的pH 7.15 - 8区间内,接近稳态极限,在pH 5 - 7.15或8 - 10时从未观察到。据推测,蛋白质、磷脂和脂质膜区域调节的增加具有阶段性,这大概构成了pH作为调节因子作用机制的基础。

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