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CCR4 is a glucose-regulated transcription factor whose leucine-rich repeat binds several proteins important for placing CCR4 in its proper promoter context.

机译:CCR4是葡萄糖调节的转录因子其富含亮氨酸的重复序列结合了几种重要的蛋白质这些蛋白质对于将CCR4置于其适当的启动子环境中至关重要。

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摘要

The yeast CCR4 protein is required for the expression of a number of genes involved in nonfermentative growth, including glucose-repressible ADH2, and is the only known suppressor of mutations in the SPT6 and SPT10 genes, two genes which are believed to be involved in chromatin maintenance. We show here that although CCR4 did not bind DNA under the conditions tested, it was able to activate transcription when fused to a heterologous DNA-binding domain. The transcriptional activation ability of CCR4, in contrast to that of many other activators, was glucose regulated. Two activation domains one of which was glucose responsive and encompassed a glutamine-proline-rich region similar to that found in other eukaryotic transcriptional factors were identified. The two transactivation regions, when separated from the leucine-rich repeat and the C terminus of CCR4, were unable to complement a defective ccr4 allele, suggesting that the leucine-rich repeat and the C terminus make contacts that link the activation regions to the proper gene context. Native immunoprecipitation of CCR4 revealed that CCR4 was complexed with at least four other proteins. The leucine-rich repeat of CCR4 was both necessary and sufficient for interaction with at least two of these factors. We propose that the leucine-rich repeat links CCR4 through its associated factors to its promoter context at ADH2 and other loci where it is required for proper transcriptional regulation.
机译:酵母CCR4蛋白是参与非发酵生长的许多基因(包括葡萄糖可抑制的ADH2)表达所必需的,并且是唯一已知的SPT6和SPT10基因突变的抑制剂,SPT6和SPT10基因被认为与染色质有关。保养。我们在这里显示,尽管CCR4在测试条件下不结合DNA,但是当融合到异源DNA结合域时,它能够激活转录。与许多其他激活剂相比,CCR4的转录激活能力受到葡萄糖调节。确定了两个激活域,其中之一是葡萄糖反应性的,并包含一个类似于其他真核转录因子中发现的富含谷氨酰胺-脯氨酸的区域。当从富含亮氨酸的重复序列和CCR4的C末端分开时,这两个反式激活区域无法与有缺陷的ccr4等位基因互补,这表明富含亮氨酸的重复序列和C末端形成了将激活区域连接到适当的接触点。基因背景。 CCR4的天然免疫沉淀显示CCR4与至少四种其他蛋白质复合。 CCR4富含亮氨酸的重复对于与这些因子中的至少两个相互作用既必要又足够。我们建议,富含亮氨酸的重复序列通过其相关因子将CCR4与其在ADH2和其他基因座的启动子环境联系起来,在此处需要适当的转录调控。

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