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首页> 外文期刊>Molecular and Cellular Biology >Mutations in SPT16/CDC68 suppress cis- and trans-acting mutations that affect promoter function in Saccharomyces cerevisiae.
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Mutations in SPT16/CDC68 suppress cis- and trans-acting mutations that affect promoter function in Saccharomyces cerevisiae.

机译:SPT16 / CDC68中的突变可抑制影响酿酒酵母启动子功能的顺式和反式突变。

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摘要

SPT16 was previously identified as a high-copy-number suppressor of delta insertion mutations in the 5' regions of the HIS4 and LYS2 genes of Saccharomyces cerevisiae. We have constructed null mutations in the SPT16 gene and have demonstrated that it is essential for growth. Temperature-sensitive-lethality spt16 alleles have been isolated and shown to be pleiotropic; at a temperature permissive for growth, spt16 mutations suppress delta insertion mutations, a deletion of the SUC2 upstream activating sequence, and mutations in trans-acting genes required for both SUC2 and Ty expression. In addition, SPT16 is identical to CDC68, a gene previously shown to be required for passage through the cell cycle control point START. However, at least some transcriptional effects caused by spt16 mutations are independent of arrest at START. These results and those in the accompanying paper (A. Rowley, R. A. Singer, and G. C. Johnston, Mol. Cell. Biol. 11:5718-5726, 1991) indicate that SPT16/CDC68 is required for normal transcription of many loci in S. cerevisiae.
机译:SPT16以前被确定为酿酒酵母HIS4和LYS2基因5'区域中delta插入突变的高拷贝数抑制剂。我们已经在SPT16基因中构建了无效突变,并证明了它对于生长至关重要。已分离出对温度敏感的致死性spt16等位基因,并显示为多效性。在允许生长的温度下,spt16突变会抑制delta插入突变,SUC2上游激活序列的缺失以及SUC2和Ty表达所需的反式基因中的突变。此外,SPT16与CDC68相同,先前显示该基因必须通过细胞周期控制点START。但是,由spt16突变引起的至少某些转录效应与START时的阻滞无关。这些结果和所附论文中的结果(A.Rowley,RA Singer和GC Johnston,Mol.Cell.Biol.11:5718-5726,1991)表明SPT16 / CDC68是S.许多位点正常转录所必需的。啤酒酵母。

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