Dominant and recessive aryl hydrocarbon hydroxylase-deficient mutants of mouse hepatoma line, Hepa-1, and assignment of recessive mutants to three complementation groups.

O Hankinson
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引用次数: 98

Abstract

Fifty-four benzo[a]pyrene (BP)-resistant, aryl hydrocarbon hydroxylase (AHH)-deficient mutants were found to be recessive, while five were dominant. Hybrids between the former mutants and the wild-type were killed by BP, and possessed AHH activities of at least 0.5 (relative to the wild-type). Dominant-mutant--wild-type hybrids were resistant to BP and had activities of about 0.05. Additional experiments assigned the recessive mutants to three complementation groups, designated A through C. Group-B--group-C hybrids were exceptional in possessing a mean AHH activity (0.36), less than the value (0.5) expected from gene dosage. This deficiency was probably due, in part, to instability of AHH activity in these hybrids. However, all hybrids tested retained stable DNA complements, equal to the sum of those of their parents, for 140 days in culture. Previous studies have shown that group B and group C mutations both affect the functioning of a cytosolic receptor required for AHH induction (1).

小鼠肝癌系,Hepa-1的显性和隐性芳烃羟酶缺陷突变体,以及三个互补组的隐性突变体的分配。
54个抗苯并[a]芘(BP)、芳烃羟化酶(AHH)缺陷突变体为隐性突变,5个为显性突变。原突变体与野生型之间的杂种被BP杀死,AHH活性至少为0.5(相对于野生型)。显性-突变型-野生型杂交种对BP具有抗性,活性约为0.05。另外的实验将隐性突变体分配到三个互补组,指定为A到c。b - c组杂交的AHH活性平均值为0.36,低于基因剂量预期值(0.5)。这种缺陷可能部分是由于这些杂交种的AHH活性不稳定所致。然而,所有被测试的杂交种在培养140天内都保持了稳定的DNA补体,相当于它们父母的DNA补体之和。先前的研究表明,B组和C组突变都会影响AHH诱导所需的细胞质受体的功能(1)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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