Institute of Functional Epigenetics, Helmholtz Zentrum München, Neuherberg, Germany.
Institute of Biophysics, Ulm University, Ulm, Germany.
EMBO Rep. 2021 Mar 3;22(3):e51009. doi: 10.15252/embr.202051009. Epub 2021 Jan 29.
Histone post-translational modifications (PTMs) are key players in chromatin regulation. The identification of novel histone acylations raises important questions regarding their role in transcription. In this study, we characterize the role of an acylation on the lateral surface of the histone octamer, H3K122 succinylation (H3K122succ), in chromatin function and transcription. Using chromatin succinylated at H3K122 in in vitro transcription assays, we show that the presence of H3K122succ is sufficient to stimulate transcription. In line with this, we found in our ChIP assays H3K122succ enriched on promoters of active genes and H3K122succ enrichment scaling with gene expression levels. Furthermore, we show that the co-activators p300/CBP can succinylate H3K122 and identify sirtuin 5 (SIRT5) as a new desuccinylase. By applying single molecule FRET assays, we demonstrate a direct effect of H3K122succ on nucleosome stability, indicating an important role for histone succinylation in modulating chromatin dynamics. Together, these data provide the first insights into the mechanisms underlying transcriptional regulation by H3K122succ.
组蛋白翻译后修饰(PTMs)是染色质调控的关键因素。新型组蛋白酰化的鉴定提出了关于其在转录中作用的重要问题。在这项研究中,我们研究了组蛋白八聚体外侧表面上的一个酰化作用,即 H3K122 琥珀酰化(H3K122succ),在染色质功能和转录中的作用。使用体外转录实验中琥珀酰化的染色质,我们表明 H3K122succ 的存在足以刺激转录。与此一致,我们在我们的 ChIP 实验中发现 H3K122succ 富集在活性基因的启动子上,并且 H3K122succ 的富集与基因表达水平成正比。此外,我们表明共激活因子 p300/CBP 可以琥珀酰化 H3K122,并鉴定出 SIRT5 是一种新的去琥珀酰化酶。通过应用单分子 FRET 测定,我们证明了 H3K122succ 对核小体稳定性的直接影响,表明组蛋白琥珀酰化在调节染色质动力学方面起着重要作用。总之,这些数据提供了关于 H3K122succ 转录调控机制的第一个见解。