Kuchin S V, Kartasheva N N, Benevolensky S V
Institute of Genetics and Selection of Industrial Microorganisms, Moscow, Russia.
Yeast. 1993 May;9(5):533-41. doi: 10.1002/yea.320090510.
A diastatic strain of Saccharomyces cerevisiae producing the STA2-encoded extracellular glucoamylase (GA) in a pronounced glucose-repressible fashion was used as a parent for generating mutants with reduced GA activity under normal conditions of derepression. In addition to mutations in STA2, five other recessive mutations were identified which fell into four complementation groups designated haf1 through haf4. RNA blot analysis suggested that the haf mutations confer defects in STA2 transcription. The haf mutants were pleiotropically defective in utilization of alternative carbon sources and resembled the snf (sucrose non-fermenting) mutants identified previously as unable to derepress the expression of the SUC2 gene encoding invertase. We present evidence strongly suggesting that haf1 = snf2, haf3 = snf1 and haf4 = snf5. By phenotypic criteria, the postulated HAF2 gene (which is none of the SNF genes tested) appears to be similar to SNF2, SNF5 and SNF6, and is possibly a non-redundant extension of this group of functionally related SNF genes.
一种酿酒酵母的糖化菌株,以明显的葡萄糖可阻遏方式产生STA2编码的胞外葡糖淀粉酶(GA),被用作亲本,以产生在去阻遏正常条件下GA活性降低的突变体。除了STA2中的突变外,还鉴定出另外五个隐性突变,它们分为四个互补组,命名为haf1至haf4。RNA印迹分析表明,haf突变在STA2转录中造成缺陷。haf突变体在利用替代碳源方面存在多效性缺陷,并且类似于先前鉴定为无法去阻遏编码转化酶的SUC2基因表达的snf(蔗糖不发酵)突变体。我们提供的证据有力地表明haf1 = snf2,haf3 = snf1和haf4 = snf5。根据表型标准,假定的HAF2基因(它不是所测试的任何SNF基因)似乎与SNF2、SNF5和SNF6相似,并且可能是这组功能相关的SNF基因的非冗余扩展。