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The Snf2 Snf5 and Snf6 Genes Are Required for Ty Transcription in Saccharomyces Cerevisiae

机译:在酿酒酵母中Ty转录需要Snf2Snf5和Snf6基因。

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摘要

The Saccharomyces cerevisiae SNF2, SNF5 and SNF6 genes were initially identified as genes required for expression of SUC2 and other glucose repressible genes. The Suc(-) defect in all three of these classes of mutants is suppressed by mutations in the SPT6 gene. Since mutations in SPT6 had also been identified as suppressors of Ty and solo δ insertion mutations at the HIS4 and LYS2 loci, we have examined Ty transcription in snf2, snf5 and snf6 mutants and have found that Ty transcription is abolished or greatly reduced. The snf2, snf5 and snf6 defect for Ty transcription, like the defect for SUC2 transcription, is suppressed by spt6 mutations. In contrast to other mutations that abolish or greatly reduce Ty transcription (in the SPT3, SPT7 and SPT8 genes), mutations in these SNF genes do not cause suppression of insertion mutations. This result suggests that the SNF2, SNF5 and SNF6 gene products act by a distinct mechanism from the SPT3, SPT7 and SPT8 gene products to promote transcription of Ty elements. This result also suggests that a reduction of Ty transcription is not always sufficient for activation of adjacent gene expression.
机译:最初将酿酒酵母SNF2,SNF5和SNF6基因鉴定为表达SUC2和其他葡萄糖可抑制基因所需的基因。所有这三类突变体中的Suc(-)缺陷都被SPT6基因中的突变所抑制。由于SPT6中的突变也已被确定为HIS4和LYS2基因座上Ty和soloδ插入突变的抑制剂,因此我们检查了snf2,snf5和snf6突变体中的Ty转录,发现Ty的转录被废除或大大减少。 Ty转录的snf2,snf5和snf6缺陷与SUC2转录的缺陷一样,被spt6突变抑制。与其他消除或大大减少Ty转录的突变(在SPT3,SPT7和SPT8基因中)相反,这些SNF基因中的突变不会引起插入突变的抑制。该结果表明,SNF2,SNF5和SNF6基因产物通过与SPT3,SPT7和SPT8基因产物不同的机制起作用,以促进Ty元件的转录。该结果还表明,Ty转录的降低并不总是足以激活邻近基因的表达。

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