首页> 外文期刊>Nucleic Acids Research >Genome-wide mapping of histone H4 serine-1 phosphorylation during sporulation in Saccharomyces cerevisiae.
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Genome-wide mapping of histone H4 serine-1 phosphorylation during sporulation in Saccharomyces cerevisiae.

机译:酿酒酵母孢子形成过程中组蛋白H4丝氨酸-1磷酸化的全基因组图谱。

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We previously showed that histone H4 serine-1 phosphorylation (H4S1ph) is evolutionarily conserved during gametogenesis, and contributes to post-meiotic nuclear compaction and to full completion of sporulation in the yeast Saccharomyces cerevisiae. Previous studies showed that H4S1ph and another modification of the same histone, H4 acetylation (H4ac), do not occur together and have opposing roles during DNA double-strand break (DSB) repair. In this study, we investigated the relationship between these marks during yeast sporulation. H4S1ph and H4ac co-exist globally during later stages of sporulation, in contrast to DSB repair. Genome-wide mapping during sporulation reveals accumulation of both marks over promoters of genes. Prevention of H4S1ph deposition delays the decline in transcription that normally occurs during spore maturation. Taken together, our results indicate that H4S1ph deposition reinforces reduced transcription that coincides with full spore compaction, without disrupting the local acetylation signature. These studies indicate distinctive features of a histone H4 modification marking system during sporulation compared with DSB repair.
机译:我们以前显示组蛋白H4丝氨酸-1磷酸化(H4S1ph)在配子发生过程中是进化保守的,并有助于减数分裂后的核致密化和酵母酿酒酵母中孢子形成的完全完成。先前的研究表明,H4S1ph和同一组蛋白的另一种修饰,即H4乙酰化(H4ac),不会一起出现,并且在DNA双链断裂(DSB)修复过程中具有相反的作用。在这项研究中,我们调查了酵母孢子形成过程中这些标记之间的关系。与DSB修复相反,H4S1ph和H4ac在孢子形成的后期共存于全球。孢子形成过程中全基因组范围的定位揭示了基因启动子上两个标记的积累。防止H4S1ph沉积可延迟孢子成熟期间通常发生的转录下降。两者合计,我们的结果表明,H4S1ph沉积增强了减少的转录,这与完整的孢子紧实同时发生,而不会破坏局部的乙酰化标记。这些研究表明,与DSB修复相比,组蛋白H4修饰标记系统在孢子形成过程中具有鲜明的特征。

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