Department of Biochemistry and Vanderbilt-Ingram Cancer Center, Vanderbilt University School of Medicine, Nashville, TN, USA.
Epigenetics. 2010 Aug 16;5(6):460-8. doi: 10.4161/epi.5.6.12314.
Regulation of Set1-COMPASS-mediated H3K4 methylation and Dot1-mediated H3K79 methylation by H2BK123 ubiquitination (H2Bub1) is an evolutionarily conserved trans-histone crosstalk mechanism. How H2Bub1 impacts chromatin structure and affects Set1-COMPASS/Dot1 functions has not been fully defined. Ubiquitin was proposed to bind proteins to physically bridge H2Bub1 with Set1-COMPASS/Dot1. Alternatively, the bulky ubiquitin was thought to be a "wedge" that loosens the nucleosome for factor access. Contrary to the latter possibility, recent discoveries provide evidence for nucleosome stabilization by H2Bub1 via preventing the constant H2A-H2B eviction. Recent data has also uncovered a "docking-site" on H2B for Set1-COMPASS. Collectively, these findings invoke a model, where ubiquitin acts as a "glue" to bind the nucleosome together for supporting Set1-COMPASS/Dot1 functions. This review provides an overview of these novel findings. Additionally, how H2Bub1 and its deubiquitination might alter the chromatin dynamics during transcription is discussed. Possible models for nucleosome stabilization by ubiquitin are also provided.
H2BK123 泛素化(H2Bub1)调控的 Set1-COMPASS 介导的 H3K4 甲基化和 Dot1 介导的 H3K79 甲基化是一种进化上保守的跨组蛋白相互作用机制。H2Bub1 如何影响染色质结构以及影响 Set1-COMPASS/Dot1 功能尚未完全确定。泛素被认为可以结合蛋白质,将 H2Bub1 与 Set1-COMPASS/Dot1 物理桥接。或者,泛素被认为是一种“楔子”,可以为因子进入疏松核小体。与后一种可能性相反,最近的发现为 H2Bub1 通过阻止 H2A-H2B 的持续驱逐来稳定核小体提供了证据。最近的数据还揭示了 H2B 上 Set1-COMPASS 的“对接位点”。总的来说,这些发现提出了一个模型,即泛素作为“胶水”结合核小体以支持 Set1-COMPASS/Dot1 功能。这篇综述概述了这些新发现。此外,还讨论了 H2Bub1 及其去泛素化如何在转录过程中改变染色质动力学。还提供了泛素稳定核小体的可能模型。