Nelson R J, Heschl M F, Craig E A
Department of Physiological Chemistry, University of Wisconsin-Madison 53706.
Genetics. 1992 Jun;131(2):277-85. doi: 10.1093/genetics/131.2.277.
Saccharomyces cerevisiae strains that contain null alleles of two hsp70 genes, SSA1 and SSA2, are temperature sensitive for growth. In this study, extragenic suppressors of ssa1 ssa2 have been isolated. Suppression is due to mutations at nuclear loci designated EXA1, EXA2 and EXA3 for EXtragenic suppressor hsp70 subfamily A. Two of the four EXA1 alleles are dominant as is EXA3-1. The other two EXA1 alleles as well as the sole EXA2 allele are recessive. EXA1 mutations lead to accumulation of a previously uncharacterized form of hsp70. EXA2 and EXA3 mutations affect the regulation of the stress response. In exa2-1 ssa1 ssa2 strains the gene products of the remaining SSA hsp70 genes, SSA3 and SSA4 (Ssa3/4p), accumulate to higher levels. The EXA3-1 mutation results in increased accumulation of both Ssa3/4p and the hsp70s encoded by the SSB1 and SSB2 genes (Ssb1/2p), suggesting that the EXA3 gene product plays a central role in the yeast stress response. Consistent with this hypothesis, EXA3-1 is tightly linked to HSF1, the gene encoding the transcriptional regulatory protein known as "heat shock factor." All of the genes identified in this study seem to be involved in regulating the expression of SSA3 and SSA4 or the activity of their protein products.
含有两个热休克蛋白70基因(SSA1和SSA2)无效等位基因的酿酒酵母菌株在生长方面对温度敏感。在本研究中,已分离出ssa1 ssa2的基因外抑制子。抑制作用是由于在核基因座上的突变,这些核基因座被命名为EXA1、EXA2和EXA3,属于基因外抑制子热休克蛋白70亚家族A。四个EXA1等位基因中的两个是显性的,EXA3 - 1也是显性的。另外两个EXA1等位基因以及唯一的EXA2等位基因是隐性的。EXA1突变导致一种先前未鉴定的热休克蛋白70形式的积累。EXA2和EXA3突变影响应激反应的调节。在exa2 - 1 ssa1 ssa2菌株中,其余SSA热休克蛋白70基因SSA3和SSA4的基因产物(Ssa3/4p)积累到更高水平。EXA3 - 1突变导致Ssa3/4p以及由SSB1和SSB2基因编码的热休克蛋白70(Ssb1/2p)积累增加,这表明EXA3基因产物在酵母应激反应中起核心作用。与该假设一致,EXA3 - 1与HSF1紧密连锁,HSF1是编码被称为“热休克因子”的转录调节蛋白的基因。本研究中鉴定的所有基因似乎都参与调节SSA3和SSA4的表达或其蛋白质产物的活性。