Kinsey J A, Fincham J R
Genetics. 1979 Nov;93(3):577-86. doi: 10.1093/genetics/93.3.577.
The mutant strain am126 was isolated, using the direct selection procedure, after nitrous acid mutagenesis. It produced neither measurable NADP-dependent glutamate dehydrogenase (GDH) nor immunologically cross-reacting material. That the am126 strain produced some form of GDH product was shown by the fact that it complemented several other am mutant strains. The GDH formed by complementation between am126 and each of two other am mutants was relatively thermolabile, but could not be distinguished from wild-type GDH formed by electrophoresis in polyacrylamide gels. This, together with the relatively high yield of the complementation enzymes, suggest that the am126 product is a polypeptide chain not grossly abnormal in structure. The spontaneous revertant frequency was between 0.3 and 3 prototrophic revertants per 10(5) live cells. This frequency was at least 40 times greater than that for am19, which had the second highest spontaneous revertant frequency among the mutants tested. Neither meiosis nor mutagenesis increased the revertant frequency, nor did incubation at elevated temperatures lower it. Sixty-eight revertant strains were examined for thermostability of their GHD. All appeared to be identical to wild type. Seven of the revertant strains were also tested for instability with regard to forward mutation to am auxtrophy. None was found to be unstable. Models for the genetic instability of the am126 mutation are discussed.
突变菌株am126是在亚硝酸诱变后,采用直接筛选程序分离得到的。它既不产生可测量的依赖NADP的谷氨酸脱氢酶(GDH),也不产生免疫交叉反应物质。am126菌株产生某种形式的GDH产物这一事实表明,它能互补其他几种am突变菌株。am126与另外两种am突变体中的每一种互补形成的GDH相对不耐热,但在聚丙烯酰胺凝胶电泳中无法与野生型GDH区分开来。这一点,再加上互补酶的相对高产率,表明am126产物是一种结构上没有严重异常的多肽链。自发回复突变频率为每10(5)个活细胞中有0.3到3个原养型回复突变体。这个频率至少是am19的40倍,am19在测试的突变体中自发回复突变频率第二高。减数分裂和诱变都没有增加回复突变频率,在高温下培养也没有降低回复突变频率。检查了68个回复突变菌株的GHD热稳定性。所有菌株似乎都与野生型相同。还对7个回复突变菌株进行了向am营养缺陷型正向突变的不稳定性测试。没有发现不稳定的情况。讨论了am126突变遗传不稳定性的模型。