Ethylene gas is essential for many developmental processes and stress responses in plants. EIN2 plays a key role in ethylene signalling but its function remains enigmatic. Here, we show that ethylene specifically elevates acetylation of histone H3K14 and the non-canonical acetylation of H3K23 in etiolated seedlings. The up-regulation of these two histone marks positively correlates with ethylene-regulated transcription activation, and the elevation requires EIN2. Both EIN2 and EIN3 interact with a SANT domain protein named EIN2 nuclear associated protein 1 (ENAP1), overexpression of which results in elevation of histone acetylation and enhanced ethylene-inducible gene expression in an EIN2-dependent manner. On the basis of these findings we propose a model where, in the presence of ethylene, the EIN2 C terminus contributes to downstream signalling via the elevation of acetylation at H3K14 and H3K23. ENAP1 may potentially mediate ethylene-induced histone acetylation via its interactions with EIN2 C terminus.
EIN2-dependent regulation of acetylation of histone H3K14 and non-canonical histone H3K23 in ethylene signalling.
EIN2 依赖性调控乙烯信号传导中组蛋白 H3K14 和非经典组蛋白 H3K23 的乙酰化
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作者:Zhang Fan, Qi Bin, Wang Likai, Zhao Bo, Rode Siddharth, Riggan Nathaniel D, Ecker Joseph R, Qiao Hong
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2016 | 起止号: | 2016 Oct 3; 7:13018 |
| doi: | 10.1038/ncomms13018 | 靶点: | H3 |
| 研究方向: | 免疫/内分泌 | ||
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