Wang H, Reynolds-Hager L, Stillman D J
Department of Cellular, Viral, and Molecular Biology, University of Utah Medical Center, Salt Lake City 84132.
Mol Gen Genet. 1994 Dec 15;245(6):675-85. doi: 10.1007/BF00297274.
SIN3 was first identified by a mutation which suppresses the effects of an swi5 mutation on expression of the HO gene in Saccharomyces cerevisiae. We now show that a sin3 mutation also partially suppresses the effects of swi1 on HO transcription, and partially suppresses the growth defect and inositol requirement observed in swi1 mutants. This suggests that SIN3 and SWI1 may play opposite regulatory roles in controlling expression of many yeast genes. Yeast SIN3 has been shown to function as a negative transcriptional regulator of a number of yeast genes. However, expression of the yeast STE6 gene is reduced in a sin3 mutant strain. This suggests that SIN3 functions as a positive regulator for STE6 transcription, although this apparent activation function could be indirect. In order to understand how SIN3 functions in STE6 regulation, we have performed a genetic analysis. It has been previously demonstrated that MCM1 and STE12 are transcriptional activators of a-specific genes such as STE6, and we now show that SWI1 is also required for STE6 expression. Our data suggest that STE12 and SWI1 function in different pathways of activation, and that STE12 is epistatic to SIN3 and SWI1. We show that the activities of the Mcm1p and Ste12p activators are modestly reduced in a sin3 mutant strain, and that phosphorylation of the Ste12p activator is decreased in a sin3 mutant. Thus, it is possible that the decreased transcription of STE6 in sin3 mutants is due to the combined effect of the diminished activities of Mcm1p and Ste12p.
SIN3最初是通过一种突变被鉴定出来的,该突变抑制了酿酒酵母中swi5突变对HO基因表达的影响。我们现在表明,sin3突变也部分抑制了swi1对HO转录的影响,并部分抑制了在swi1突变体中观察到的生长缺陷和肌醇需求。这表明SIN3和SWI1在控制许多酵母基因的表达中可能发挥相反的调节作用。酵母SIN3已被证明是许多酵母基因的负转录调节因子。然而,酵母STE6基因在sin3突变菌株中的表达降低。这表明SIN3作为STE6转录的正调节因子发挥作用,尽管这种明显的激活功能可能是间接的。为了了解SIN3在STE6调节中的作用方式,我们进行了遗传分析。先前已经证明MCM1和STE12是a特异性基因如STE6的转录激活因子,并且我们现在表明SWI1对于STE6的表达也是必需的。我们的数据表明STE12和SWI1在不同的激活途径中起作用,并且STE12对SIN3和SWI1是上位性的。我们表明,在sin3突变菌株中,Mcm1p和Ste12 p激活因子的活性适度降低,并且在sin3突变体中Ste12 p激活因子的磷酸化降低。因此,sin3突变体中STE6转录减少可能是由于Mcm1p和Ste12p活性降低的综合作用。