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Hir Proteins Are Required for Position-Dependent Gene Silencing in Saccharomyces cerevisiae in the Absence of Chromatin Assembly Factor I

机译:在没有染色质组装因子I的情况下酿酒酵母中位置依赖性基因沉默需要Hir蛋白

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摘要

Chromatin assembly factor I (CAF-I) is a three-subunit histone-binding complex conserved from the yeast Saccharomyces cerevisiae to humans. Yeast cells lacking CAF-I (cacΔ mutants) have defects in heterochromatic gene silencing. In this study, we showed that deletion of HIR genes, which regulate histone gene expression, synergistically reduced gene silencing at telomeres and at the HM loci in cacΔ mutants, although hirΔ mutants had no silencing defects when CAF-I was intact. Therefore, Hir proteins are required for an alternative silencing pathway that becomes important in the absence of CAF-I. Because Hir proteins regulate expression of histone genes, we tested the effects of histone gene deletion and overexpression on telomeric silencing and found that alterations in histone H3 and H4 levels or in core histone stoichiometry reduced silencing in cacΔ mutants but not in wild-type cells. We therefore propose that Hir proteins contribute to silencing indirectly via regulation of histone synthesis. However, deletion of combinations of CAC and HIR genes also affected the growth rate and in some cases caused partial temperature sensitivity, suggesting that global aspects of chromosome function may be affected by the loss of members of both gene families.
机译:染色质组装因子I(CAF-1)是一个三亚基组蛋白结合复合物,从酿酒酵母中向人保守。缺乏CAF-1(cacΔ突变体)的酵母细胞在异色基因沉默中有缺陷。在这项研究中,我们表明,尽管在CAF-1完整时hirΔ突变体没有沉默缺陷,但在cacΔ突变体中,调控组蛋白基因表达的HIR基因的缺失协同降低了端粒和HM位点的基因沉默。因此,Hir蛋白是替代沉默途径所必需的,而沉默途径在没有CAF-1的情况下变得很重要。因为Hir蛋白调节组蛋白基因的表达,所以我们测试了组蛋白基因缺失和过表达对端粒沉默的影响,发现组蛋白H3和H4水平或核心组蛋白化学计量的改变降低了cacΔ突变体的沉默,但没有降低野生型细胞的沉默。因此,我们提出,Hir蛋白可通过调节组蛋白合成间接有助于沉默。但是,删除CAC和HIR基因的组合也会影响生长速度,并且在某些情况下会引起部分温度敏感性,这表明染色体功能的全局方面可能会受到两个基因家族成员丢失的影响。

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