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组蛋白甲基转移酶SDG8介导植物中光响应基因和碳响应基因的表观遗传修饰。

The histone methyltransferase SDG8 mediates the epigenetic modification of light and carbon responsive genes in plants.

作者信息

Li Ying, Mukherjee Indrani, Thum Karen E, Tanurdzic Milos, Katari Manpreet S, Obertello Mariana, Edwards Molly B, McCombie W Richard, Martienssen Robert A, Coruzzi Gloria M

机构信息

Department of Biology, Center for Genomics and Systems Biology, New York University, New York, NY, 10003, USA.

Cold Spring Harbor Laboratory, Cold Spring Harbor, New York, NY, 11724, USA.

出版信息

Genome Biol. 2015 Apr 19;16(1):79. doi: 10.1186/s13059-015-0640-2.

Abstract

BACKGROUND

Histone methylation modifies the epigenetic state of target genes to regulate gene expression in the context of developmental and environmental changes. Previously, we used a positive genetic screen to identify an Arabidopsis mutant, cli186, which was impaired in carbon and light signaling. Here, we report a deletion of the Arabidopsis histone methyltransferase SDG8 in this mutant (renamed sdg8-5), which provides a unique opportunity to study the global function of a specific histone methyltransferase within a multicellular organism.

RESULTS

To assess the specific role of SDG8, we examine how the global histone methylation patterns and transcriptome were altered in the sdg8-5 deletion mutant compared to wild type, within the context of transient light and carbon treatments. Our results reveal that the sdg8 deletion is associated with a significant reduction of H3K36me3, preferentially towards the 3' end of the gene body, accompanied by a reduction in gene expression. We uncover 728 direct targets of SDG8 that have altered methylation in the sdg8-5 mutant and are also bound by SDG8. As a group, this set of SDG8 targets is enriched in specific biological processes including defense, photosynthesis, nutrient metabolism and energy metabolism. Importantly, 64% of these SDG8 targets are responsive to light and/or carbon signals.

CONCLUSIONS

The histone methyltransferase SDG8 functions to regulate the H3K36 methylation of histones associated with gene bodies in Arabidopsis. The H3K36me3 mark in turn is associated with high-level expression of a specific set of light and/or carbon responsive genes involved in photosynthesis, metabolism and energy production.

摘要

背景

组蛋白甲基化修饰靶基因的表观遗传状态,以在发育和环境变化的背景下调节基因表达。此前,我们通过正向遗传筛选鉴定出拟南芥突变体cli186,其在碳和光信号传导方面存在缺陷。在此,我们报道该突变体(重命名为sdg8-5)中拟南芥组蛋白甲基转移酶SDG8发生缺失,这为研究多细胞生物体内特定组蛋白甲基转移酶的整体功能提供了独特机会。

结果

为评估SDG8的具体作用,我们研究了在短暂光照和碳处理的背景下,与野生型相比,sdg8-5缺失突变体中整体组蛋白甲基化模式和转录组是如何改变的。我们的结果表明,sdg8缺失与H3K36me3的显著减少相关,这种减少优先发生在基因体的3'端,同时伴随着基因表达的降低。我们发现了728个SDG8的直接靶标,它们在sdg8-5突变体中甲基化发生改变,并且也被SDG8结合。作为一个整体,这组SDG8靶标在包括防御、光合作用、营养代谢和能量代谢等特定生物学过程中富集。重要的是,这些SDG8靶标中有64%对光和/或碳信号有反应。

结论

组蛋白甲基转移酶SDG8在拟南芥中发挥作用,调节与基因体相关的组蛋白的H3K36甲基化。H3K36me3标记反过来与一组参与光合作用、代谢和能量产生的特定光和/或碳响应基因的高水平表达相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad11/4464704/3433ff0c001c/13059_2015_640_Fig1_HTML.jpg

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