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Global Regulation by the Yeast Spt10 Protein Is Mediated through Chromatin Structure and the Histone Upstream Activating Sequence Elements

机译:酵母Spt10蛋白的全球调控是通过染色质结构和组蛋白上游激活序列元素介导的。

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摘要

The yeast SPT10 gene encodes a putative histone acetyltransferase (HAT) implicated as a global transcription regulator acting through basal promoters. Here we address the mechanism of this global regulation. Although microarray analysis confirmed that Spt10p is a global regulator, Spt10p was not detected at any of the most strongly affected genes in vivo. In contrast, the presence of Spt10p at the core histone gene promoters in vivo was confirmed. Since Spt10p activates the core histone genes, a shortage of histones could occur in spt10Δ cells, resulting in defective chromatin structure and a consequent activation of basal promoters. Consistent with this hypothesis, the spt10Δ phenotype can be rescued by extra copies of the histone genes and chromatin is poorly assembled in spt10Δ cells, as shown by irregular nucleosome spacing and reduced negative supercoiling of the endogenous 2μm plasmid. Furthermore, Spt10p binds specifically and highly cooperatively to pairs of upstream activating sequence elements in the core histone promoters [consensus sequence, (G/A)TTCCN6TTCNC], consistent with a direct role in histone gene regulation. No other high-affinity sites are predicted in the yeast genome. Thus, Spt10p is a sequence-specific activator of the histone genes, possessing a DNA-binding domain fused to a likely HAT domain.
机译:酵母SPT10基因编码一个推定的组蛋白乙酰转移酶(HAT),其被认为是通过基础启动子起作用的全局转录调节剂。在这里,我们讨论这一全球法规的机制。尽管微阵列分析证实Spt10p是一种全局调节因子,但在体内受影响最严重的任何基因中均未检测到Spt10p。相反,证实了在体内核心组蛋白基因启动子处Spt10p的存在。由于Spt10p激活核心组蛋白基因,因此在spt10Δ细胞中可能会发生组蛋白不足,从而导致染色质结构缺陷,并进而激活基础启动子。与此假设相符,可以通过额外复制组蛋白基因来挽救spt10Δ表型,并且染色质在spt10Δ细胞中组装不良,如核糖体空间不规则和内源性2μm质粒负超螺旋减少。此外,Spt10p与核心组蛋白启动子[共有序列,(G / A)TTCCN6TTCNC]中的上游激活序列对成对特异性结合且高度协作,这与组蛋白基因调控的直接作用一致。在酵母基因组中没有其他高亲和力的位点被预测。因此,Spt10p是组蛋白基因的序列特异性激活剂,具有与可能的HAT结构域融合的DNA结合结构域。

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