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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >High-resolution mapping of H4K16 and H3K23 acetylation reveals conserved and unique distribution patterns in Arabidopsis and rice
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High-resolution mapping of H4K16 and H3K23 acetylation reveals conserved and unique distribution patterns in Arabidopsis and rice

机译:H4K16和H3K23乙酰化的高分辨率图谱揭示了拟南芥和水稻中保守且独特的分布模式

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摘要

Histone acetylation and deacetylation are key epigenetic gene regulatory mechanisms that play critical roles in eukaryotes. Acetylation of histone 4 lysine 16 (H4K16ac) is implicated in many cellular processes. However, its biological function and relationship with transcription are largely unexplored in plants. We generated first genome-wide high-resolution maps of H4K16ac in Arabidopsis thaliana and Oryza sativa. We showed that H4K16ac is preferentially enriched around the transcription start sites and positively correlates with gene expression levels. Co-existence of H4K16ac and H3K23ac is correlated with high gene expression levels, suggesting a potentially combinatorial effect of H4K16ac and H3K23ac histone 3 lysine 23 acetylation on gene expression. Our data further revealed that while genes enriched with both H4K16ac and H3K23ac are ubiquitously expressed, genes enriched with only H4K16ac or H3K23ac showed significantly distinct expression patterns in association with particular developmental stages. Unexpectedly, and unlike in Arabidopsis, there are significant levels of both H4K16ac and H3K23ac in the lowly expressed genes in rice. Furthermore, we found that H4K16ac-enriched genes are associated with different biological processes in Arabidopsis and rice, suggesting a potentially species-specific role of H4K16ac in plants. Together, our genome-wide profiling reveals the conserved and unique distribution patterns of H4K16ac and H3K23ac in Arabidopsis and rice and provides a foundation for further understanding their function in plants.
机译:组蛋白乙酰化和脱乙酰化是关键的表观遗传基因调控机制,在真核生物中起关键作用。组蛋白4赖氨酸16(H4K16ac)的乙酰化涉及许多细胞过程。但是,其生物学功能以及与转录的关系在植物中尚未得到充分探索。我们在拟南芥和水稻中生成了首个全基因组高分辨率的H4K16ac图。我们显示,H4K16ac在转录起始位点周围优先富集,并且与基因表达水平正相关。 H4K16ac和H3K23ac的共存与高基因表达水平相关,表明H4K16ac和H3K23ac组蛋白3赖氨酸23乙酰化对基因表达的潜在组合作用。我们的数据进一步揭示,虽然普遍表达了同时富含H4K16ac和H3K23ac的基因,但仅富含H4K16ac或H3K23ac的基因显示出与特定发育阶段明显不同的表达模式。出乎意料的是,与拟南芥不同,水稻中低表达基因中H4K16ac和H3K23ac的水平都很高。此外,我们发现,富含H4K16ac的基因与拟南芥和水稻中的不同生物过程相关,这表明H4K16ac在植物中可能具有物种特异性的作用。总之,我们的全基因组分布图揭示了H4K16ac和H3K23ac在拟南芥和水稻中的保守且独特的分布模式,并为进一步了解它们在植物中的功能奠定了基础。

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