Nelson R E, Selitrennikoff C P, Siegel R W
J Bacteriol. 1975 May;122(2):695-709. doi: 10.1128/jb.122.2.695-709.1975.
A new screening technique has been developed for the rapid identification of Neurospora crassa mutants that are deficient in nicotinamide adenine dinucleotide glycohydrolase (NADase) and nicotinamide adenine dinucleotide phosphate glycohydrolase (NADPase) activities. Using this procedure, five single-gene mutants were isolated whose singular difference from wild type appeared to be the absence of NAD(P)ase (EC 3.2.2.6). All five mutants were found to be genetically allelic and did not complement in heterocaryons. This gene, nada [NAD(P)ase], was localized in linkage group IV. One of the nada alleles was found to specify an enzyme that was critically temperature sensitive and had altered substrate affinity. Mutations at the nada locus did not affect the genetic program for the expression of NAD(P)ase during cell differentiation, nor did they have a general effect on NAD catabolism. Nada mutations did not have simultaneous effects on other glycohydrolase activities. Tests of dominance (in heterocaryons) and in vitro mixing experiments did not provide evidence that nada mutations alter activators or inhibitors of NAD(P)ase. Thus, the nada gene appears to specify only the structure of N. crassa NAD(P)ase.
已开发出一种新的筛选技术,用于快速鉴定烟酰胺腺嘌呤二核苷酸糖水解酶(NADase)和烟酰胺腺嘌呤二核苷酸磷酸糖水解酶(NADPase)活性缺陷的粗糙脉孢菌突变体。使用该程序,分离出五个单基因突变体,它们与野生型的唯一差异似乎是缺乏NAD(P)ase(EC 3.2.2.6)。发现所有五个突变体在遗传上是等位基因,并且在异核体中不互补。这个基因,nada [NAD(P)ase],定位在连锁群IV中。发现其中一个nada等位基因指定一种对温度极其敏感且底物亲和力改变的酶。nada位点的突变不影响细胞分化过程中NAD(P)ase表达的遗传程序,也对NAD分解代谢没有普遍影响。Nada突变对其他糖水解酶活性没有同时影响。显性测试(在异核体中)和体外混合实验没有提供证据表明nada突变改变了NAD(P)ase的激活剂或抑制剂。因此,nada基因似乎仅指定粗糙脉孢菌NAD(P)ase的结构。