Velmurugan S, Lobo Z, Maitra P K
Molecular Biology Unit, Tata Institute of Fundamental Research, Mumbai, India.
Genetics. 1997 Mar;145(3):587-94. doi: 10.1093/genetics/145.3.587.
Mutants lacking pyruvate decarboxylase cannot grow on glucose. We have isolated three different complementation groups of extragenic suppressors that suppress mutations in pdc2, a regulatory locus required for the synthesis of the glycolytic enzyme pyruvate decarboxylase. The most frequent of these is a recessive mutation in the structural gene PFK1 of the soluble phosphofructokinase. The other class XSP18 (extragenic suppressor of pdc2) is a dominant temperature-sensitive suppressor that allows the cells to grow on glucose only at 30 degrees but not at 36 degrees. It also affects the normal induction of the glucose-inducible enolase 2, which can be rescued by providing a copy of wild-type xsp18 in trans-heterozygotes. The pyruvate decarboxylase activity in the triple mutant pdc2 pfk1 XSP18 is nearly equal to the sum of the activities in the two double mutants pdc2 pfk1 and pdc2 XSP18, respectively. This implies that the two suppressors act through independent pathways or that there is no cooperativity between them. In the pdc2 pfk1 XSP18, strain, pfk1 suppresses the loss of induction of glucose-inducible enolase 2 brought about by XSP18 but fails to rescue temperature sensitivity. The third class (xsp37) supports the growth of the pdc2 mutant on glucose but fails to support growth on gluconeogenic carbon sources. All the three suppressors suppress pdc2 delta as well and act on PDC1 at the level of transcription.
缺乏丙酮酸脱羧酶的突变体无法在葡萄糖上生长。我们分离出了三类不同的基因外抑制子互补群,它们可抑制pdc2中的突变,pdc2是糖酵解酶丙酮酸脱羧酶合成所需的一个调控位点。其中最常见的是可溶性磷酸果糖激酶的结构基因PFK1中的一个隐性突变。另一类XSP18(pdc2的基因外抑制子)是一种显性温度敏感型抑制子,它仅允许细胞在30摄氏度而非36摄氏度时在葡萄糖上生长。它还影响葡萄糖诱导型烯醇化酶2的正常诱导,通过在反式杂合子中提供野生型xsp18的一个拷贝可挽救这种影响。三突变体pdc2 pfk1 XSP18中的丙酮酸脱羧酶活性分别几乎等于两个双突变体pdc2 pfk1和pdc2 XSP18中活性之和。这意味着这两种抑制子通过独立途径起作用,或者它们之间不存在协同作用。在pdc2 pfk1 XSP18菌株中,pfk1抑制由XSP18导致的葡萄糖诱导型烯醇化酶2诱导缺失,但无法挽救温度敏感性。第三类(xsp37)支持pdc2突变体在葡萄糖上生长,但不支持在糖异生碳源上生长。所有这三种抑制子也都能抑制pdc2 delta,并在转录水平作用于PDC1。