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导致酵母中组成型蔗糖酶合成的突变:与snf突变的遗传相互作用

Mutations causing constitutive invertase synthesis in yeast: genetic interactions with snf mutations.

作者信息

Neigeborn L, Carlson M

出版信息

Genetics. 1987 Feb;115(2):247-53. doi: 10.1093/genetics/115.2.247.

Abstract

We have selected 210 mutants able to grow on sucrose in the presence of 2-deoxyglucose. We identified recessive mutations in three major complementation groups that cause constitutive (glucose-insensitive) secreted invertase synthesis. Two groups comprise alleles of the previously identified HXK2 and REG1 genes, and the third group was designated cid1 (constitutive invertase derepression). The effect of cid1 on SUC2 expression is mediated by the SUC2 upstream regulatory region, as judged by the constitutive expression of a SUC2-LEU2-lacZ fusion in which the LEU2 promoter is under control of SUC2 upstream sequences. A cid1 mutation also causes glucose-insensitive expression of maltase. The previously isolated constitutive mutation ssn6 is epistatic to cid1, reg1 and hxk2 for very high level constitutive invertase expression. Mutations in SNF genes that prevent derepression of invertase are epistatic to cid1, reg1 and hxk2; we have previously shown that ssn6 has different epistasis relationships with snf mutations. The constitutive mutation tup1 was found to resemble ssn6 in its genetic interactions with snf mutations. These findings suggest that CID1, REG1 and HXK2 are functionally distinct from SSN6 and TUP1.

摘要

我们挑选出了210个在2-脱氧葡萄糖存在的情况下能够利用蔗糖生长的突变体。我们在三个主要互补群中鉴定出隐性突变,这些突变会导致组成型(葡萄糖不敏感型)分泌型转化酶的合成。其中两个互补群包含先前鉴定出的HXK2和REG1基因的等位基因,第三个互补群被命名为cid1(组成型转化酶去阻遏)。从SUC2-LEU2-lacZ融合基因的组成型表达(其中LEU2启动子受SUC2上游序列控制)判断,cid1对SUC2表达的影响是由SUC2上游调控区域介导的。cid1突变还会导致麦芽糖酶的葡萄糖不敏感型表达。先前分离出的组成型突变体ssn6在非常高水平的组成型转化酶表达方面对cid1、reg1和hxk2呈上位性。阻止转化酶去阻遏的SNF基因突变对cid1、reg1和hxk2呈上位性;我们先前已表明,ssn6与snf突变具有不同的上位性关系。发现组成型突变体tup1在与snf突变的遗传相互作用方面与ssn6相似。这些发现表明,CID1、REG1和HXK2在功能上与SSN6和TUP1不同。

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