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中国仓鼠细胞嘌呤代谢异常突变体的生化遗传学III. 一个无法将肌苷酸转化为腺苷酸的突变体的分离与鉴定

Biochemical genetics of Chinese hamster cell mutants with deviant purine metabolism III. Isolation and characterization of a mutant unable to convert IMP to AMP.

作者信息

Patterson D

出版信息

Somatic Cell Genet. 1976 Jan;2(1):41-53. doi: 10.1007/BF01539241.

Abstract

The isolation and characterization of a new mutant of Chinese ovary cells (CHO-K1) is described. This mutant, Ade-H, has the following properties: (1) it forms a new genetic complementation group; (2) it specifically requires adenine for growth and will not grow on aminoimidazole carboxamide (AIC) or hypoxanthine; (3) it accumulates IMP; (4) it cannot synthesize adenine nucleotides; (5) its phenotype can be mimicked by treatment of CHO-K1 (the wild type parental strain) with hadacidin, an inhibitor of adenylosuccinate synthetase (E.C.6.3.4.4). Thus, the site of the defect in this mutant is presumed to involve the step in adenylate biosynthesis catalyzed by this enzyme. The usefulness of Ade-H for the study of regulation of purine biosynthesis in mammalian cells is discussed.

摘要

本文描述了中国仓鼠卵巢细胞(CHO-K1)一种新突变体的分离和特性。这种突变体Ade-H具有以下特性:(1)它形成了一个新的遗传互补群;(2)它生长特别需要腺嘌呤,在氨基咪唑甲酰胺(AIC)或次黄嘌呤上不能生长;(3)它积累肌苷酸(IMP);(4)它不能合成腺嘌呤核苷酸;(5)用氨甲蝶呤(一种腺苷酸琥珀酸合成酶(E.C.6.3.4.4)的抑制剂)处理CHO-K1(野生型亲代菌株)可模拟其表型。因此,推测该突变体的缺陷位点涉及由该酶催化的腺苷酸生物合成步骤。讨论了Ade-H在研究哺乳动物细胞嘌呤生物合成调控中的作用。

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