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成年大鼠和豚鼠中多种血红蛋白的非均匀生物合成。

Nonuniform biosynthesis of multiple hemoglobins in the adult rat and guinea pig.

作者信息

Weiser E, Yeh C K, Lin W, Mazur A

出版信息

J Biol Chem. 1976 Sep 25;251(18):5703-10.

PMID:965387
Abstract

Separation of adult rat bone marrow cells by the method of thin layer countercurrent distribution permits the analyses of 59Fe-tagged erythroid cells for the various multiple hemoglobins and the assignment of such hemoglobins to erythroid cells at different stages of their development. Of the six adult red cell hemoglobins, hemoglobin 5 is synthesized most actively in the earliest erythroid cell whereas hemoglobin 4 (the major hemoglobin of the red cell) is synthesized most actively in the latest erythroid cells, e.g. the reticulocyte. Experimental evidence also indicates that maturation of the erythroid cell is accompanied by a decreased rate of synthesis of hemoglobin 5. The earliest erythroid cells of the marrow contain two hemoglobins, 7 and 8, which are absent in the adult red cell. Similar studies with the guinea pig confirm the nonuniform biosynthesis of its two hemoglobins and suggest that the phenomenon may be a general one among mammalian multiple hemoglobins.

摘要

采用薄层逆流分配法分离成年大鼠骨髓细胞,可对用59Fe标记的红系细胞进行分析,以检测各种多种血红蛋白,并将这些血红蛋白与处于不同发育阶段的红系细胞相对应。在六种成年红细胞血红蛋白中,血红蛋白5在最早的红系细胞中合成最为活跃,而血红蛋白4(红细胞的主要血红蛋白)在最晚的红系细胞(如网织红细胞)中合成最为活跃。实验证据还表明,红系细胞的成熟伴随着血红蛋白5合成速率的降低。骨髓中最早的红系细胞含有两种成年红细胞中不存在的血红蛋白,即血红蛋白7和血红蛋白8。对豚鼠进行的类似研究证实了其两种血红蛋白生物合成的不均匀性,并表明这种现象在哺乳动物的多种血红蛋白中可能是普遍存在的。

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