Huynh Mai T, Sengupta Bhaswati, Krajewski Wladyslaw A, Lee Tae-Hee
bioRxiv. 2023 Jan 5:2023.01.05.522859. doi: 10.1101/2023.01.05.522859.
Post-translational modifications of histone proteins often mediate gene regulation by altering the global and local stability of the nucleosome, the basic gene-packing unit of eukaryotes. We employed semi-synthetic approaches to introduce histone H2B ubiquitylations at K34 (H2BK34ub) and K120 (H2BK120ub) and H3 K79 trimethylation (H3K79me3). With these modified histones, we investigated their effects on the kinetics of transcription elongation by RNA Polymerase II (Pol II) using single-molecule FRET. Pol II pauses at several locations within the nucleosome for a few seconds to minutes, which governs the overall transcription efficiency. We found that H2B ubiquitylations suppress pauses and shorten the pause durations near the nucleosome entry while H3K79me3 shortens the pause durations and increases the rate of RNA elongation near the center of the nucleosome. We also found that H2BK34ub facilitates partial rewrapping of the nucleosome upon Pol II passage. These observations suggest that H2B ubiquitylations promote transcription elongation and help maintain the chromatin structure by inducing and stabilizing nucleosome intermediates and that H3K79me3 facilitates Pol II progression possibly by destabilizing the local structure of the nucleosome. Our results provide the mechanisms of how these modifications coupled by a network of regulatory proteins facilitate transcription in two different regions of the nucleosome and help maintain the chromatin structure during active transcription.
组蛋白的翻译后修饰通常通过改变核小体(真核生物的基本基因包装单元)的整体和局部稳定性来介导基因调控。我们采用半合成方法在K34(H2BK34ub)、K120(H2BK120ub)位点引入组蛋白H2B泛素化修饰以及H3 K79三甲基化修饰(H3K79me3)。利用这些修饰的组蛋白,我们通过单分子荧光共振能量转移技术研究了它们对RNA聚合酶II(Pol II)转录延伸动力学的影响。Pol II在核小体内的几个位置停顿几秒到几分钟,这决定了整体转录效率。我们发现,H2B泛素化修饰抑制停顿并缩短核小体进入位点附近的停顿持续时间,而H3K79me3缩短停顿持续时间并提高核小体中心附近的RNA延伸速率。我们还发现,H2BK34ub促进Pol II通过时核小体的部分重新包裹。这些观察结果表明,H2B泛素化修饰通过诱导和稳定核小体中间体来促进转录延伸并有助于维持染色质结构,而H3K79me3可能通过破坏核小体的局部结构来促进Pol II前进。我们的结果揭示了这些修饰如何通过一个调控蛋白网络在核小体的两个不同区域促进转录,并在活跃转录过程中帮助维持染色质结构的机制。