Silar P, Butler G, Thiele D J
Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor 48109-0606.
Mol Cell Biol. 1991 Mar;11(3):1232-8. doi: 10.1128/mcb.11.3.1232-1238.1991.
In the yeast Saccharomyces cerevisiae, transcription of the metallothionein gene CUP1 is induced by copper and silver. Strains with a complete deletion of the ACE1 gene, the copper-dependent activator of CUP1 transcription, are hypersensitive to copper. These strains have a low but significant basal level of CUP1 transcription. To identify genes which mediate basal transcription of CUP1 or which activate CUP1 in response to other stimuli, we isolated an extragenic suppressor of an ace1 deletion. We demonstrate that a single amino acid substitution in the heat shock transcription factor (HSF) DNA-binding domain dramatically enhances CUP1 transcription while reducing transcription of the SSA3 gene, a member of the yeast hsp70 gene family. These results indicate that yeast metallothionein transcription is under HSF control and that metallothionein biosynthesis is important in response to heat shock stress. Furthermore, our results suggest that HSF may modulate the magnitude of individual heat shock gene transcription by subtle differences in its interaction with heat shock elements and that a single-amino-acid change can dramatically alter the activity of the factor for different target genes.
在酿酒酵母中,金属硫蛋白基因CUP1的转录由铜和银诱导。完全缺失ACE1基因(CUP1转录的铜依赖性激活因子)的菌株对铜高度敏感。这些菌株的CUP1转录具有低但显著的基础水平。为了鉴定介导CUP1基础转录或响应其他刺激激活CUP1的基因,我们分离出了ace1缺失的基因外抑制子。我们证明,热休克转录因子(HSF)DNA结合结构域中的单个氨基酸取代显著增强了CUP1转录,同时降低了酵母hsp70基因家族成员SSA3基因的转录。这些结果表明,酵母金属硫蛋白转录受HSF控制,金属硫蛋白生物合成在应对热休克应激中很重要。此外,我们的结果表明,HSF可能通过其与热休克元件相互作用的细微差异来调节单个热休克基因转录的幅度,并且单个氨基酸变化可以显著改变该因子对不同靶基因的活性。