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不同年龄大鼠红细胞的表面修饰对其在电荷敏感双聚合物水相中的分配行为的影响。

Effect of surface modification of rat erythrocytes of different ages on their partitioning behavior in charge-sensitive two-polymer aqueous phases.

作者信息

Walter H, Krob E J, Pedram A, Tamblyn C H, Seaman G V

出版信息

Biochim Biophys Acta. 1986 Sep 11;860(3):650-61. doi: 10.1016/0005-2736(86)90565-1.

Abstract

Partitioning differences between cells in two-polymer aqueous phase systems originate from subtle differences between the surface properties of cells. Because of the exponential relation between the parameters affecting the partition ratio (P) and the P itself, differences in membrane components suspected of effecting the differential partitioning of closely related cell populations cannot be directly established by conventional chemical assay techniques. In order to study the chemical nature of the components responsible for the age-related changes in surface properties of rat red cells we have devised an approach which uses a combination of isotopic labeling of erythrocyte subpopulations of distinct cell age with different enzyme and/or chemical treatments followed by countercurrent distribution in charge-sensitive two-polymer aqueous phase systems. These studies show that: neuraminidase-susceptible sialic acid is not responsible for the cell age-related surface differences detected by partitioning; the component(s) responsible for the cell age-related surface differences can be extracted (from aldehyde-fixed red cells) with ethanol or cleaved with dilute sulfuric acid. Our data are consistent with the hypothesis that ganglioside-linked sialic acid is the chemical moiety responsible for the cell charge-associated surface differences among rat red blood cells of different ages.

摘要

两聚合物水相系统中细胞间的分配差异源于细胞表面性质的细微差别。由于影响分配比(P)的参数与P本身之间呈指数关系,因此,对于怀疑影响密切相关细胞群体差异分配的膜成分差异,无法通过传统化学分析技术直接确定。为了研究导致大鼠红细胞表面性质出现年龄相关变化的成分的化学性质,我们设计了一种方法,该方法结合了对不同细胞年龄的红细胞亚群进行同位素标记,并采用不同的酶和/或化学处理,随后在对电荷敏感的两聚合物水相系统中进行逆流分配。这些研究表明:神经氨酸酶敏感的唾液酸并非造成通过分配检测到的细胞年龄相关表面差异的原因;造成细胞年龄相关表面差异的成分可以用乙醇从(醛固定的红细胞)中提取出来,或用稀硫酸裂解。我们的数据与以下假设一致,即神经节苷脂连接的唾液酸是造成不同年龄大鼠红细胞之间与细胞电荷相关的表面差异的化学部分。

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