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首页> 外文期刊>Molecular cell >Molecular basis for the recognition of phosphorylated and phosphoacetylated histone h3 by 14-3-3.
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Molecular basis for the recognition of phosphorylated and phosphoacetylated histone h3 by 14-3-3.

机译:14-3-3识别磷酸化和磷酸乙酰化组蛋白h3的分子基础。

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摘要

Phosphorylation of histone H3 is implicated in transcriptional activation and chromosome condensation, but its immediate molecular function has remained obscure. By affinity chromatography of nuclear extracts against modified H3 tail peptides, we identified 14-3-3 isoforms as proteins that bind these tails in a strictly phosphorylation-dependent manner. Acetylation of lysines 9 and 14 does not impede 14-3-3 binding to serine 10-phosphorylated H3 tails. In vivo, 14-3-3 is inducibly recruited to c-fos and c-jun nucleosomes upon gene activation, concomitant with H3 phosphoacetylation. We have determined the structures of 14-3-3zeta complexed with serine 10-phosphorylated or phosphoacetylated H3 peptides. These reveal a distinct mode of 14-3-3/phosphopeptide binding and provide a structural understanding for the lack of effect of acetylation at lysines 9 and 14 on this interaction. 14-3-3 isoforms thus represent a class of proteins that mediate the effect of histone phosphorylation at inducible genes.
机译:组蛋白H3的磷酸化与转录激活和染色体浓缩有关,但其直接的分子功能仍然不清楚。通过对提取物进行修饰的H3尾部肽的亲和层析,我们鉴定出14-3-3亚型为以严格的磷酸化依赖性方式结合这些尾部的蛋白质。赖氨酸9和14的乙酰化不会阻碍14-3-3与丝氨酸10磷酸化的H3尾部的结合。在体内,在基因激活后,伴随H3磷酸乙酰化,可将14-3-3诱导募集到c-fos和c-jun核小体。我们已经确定了与丝氨酸10-磷酸化或磷酸乙酰化的H3肽复合的14-3-3zeta的结构。这些揭示了14-3-3 /磷酸肽结合的独特模式,并为缺乏赖氨酸9和14上的乙酰化作用对这种相互作用提供了结构上的理解。因此14-3-3亚型代表了一类蛋白质,可介导组蛋白磷酸化在可诱导基因上的作用。

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