Department of Biophysics & Biophysical Chemistry, Johns Hopkins University School of Medicine, 725 N. Wolfe Street, Baltimore, MD 21205, USA.
EpiCypher Inc., 6 Davis Drive, Suite 755, Durham, NC 27709, USA.
Nucleic Acids Res. 2024 Sep 9;52(16):9978-9995. doi: 10.1093/nar/gkae698.
Monoubiquitination of histones H2B-K120 (H2BK120ub) and H2A-K119 (H2AK119ub) play opposing roles in regulating transcription and chromatin compaction. H2BK120ub is a hallmark of actively transcribed euchromatin, while H2AK119ub is highly enriched in transcriptionally repressed heterochromatin. Whereas H2BK120ub is known to stimulate the binding or activity of various chromatin-modifying enzymes, this post-translational modification (PTM) also interferes with the binding of several proteins to the nucleosome H2A/H2B acidic patch via an unknown mechanism. Here, we report cryoEM structures of an H2BK120ub nucleosome showing that ubiquitin adopts discrete positions that occlude the acidic patch. Molecular dynamics simulations show that ubiquitin remains stably positioned over this nucleosome region. By contrast, our cryoEM structures of H2AK119ub nucleosomes show ubiquitin adopting discrete positions that minimally occlude the acidic patch. Consistent with these observations, H2BK120ub, but not H2AK119ub, abrogates nucleosome interactions with acidic patch-binding proteins RCC1 and LANA, and single-domain antibodies specific to this region. Our results suggest a mechanism by which H2BK120ub serves as a gatekeeper to the acidic patch and point to distinct roles for histone H2AK119 and H2BK120 ubiquitination in regulating protein binding to nucleosomes.
组蛋白 H2B-K120(H2BK120ub)和 H2A-K119(H2AK119ub)的单泛素化在调节转录和染色质紧缩方面发挥着相反的作用。H2BK120ub 是活跃转录的常染色质的标志,而 H2AK119ub 高度富集在转录抑制的异染色质中。虽然 H2BK120ub 已知能刺激各种染色质修饰酶的结合或活性,但这种翻译后修饰(PTM)也通过未知机制干扰了几种蛋白质与核小体 H2A/H2B 酸性斑的结合。在这里,我们报告了 H2BK120ub 核小体的 cryoEM 结构,表明泛素采用离散的位置来封闭酸性斑。分子动力学模拟表明,泛素在这个核小体区域保持稳定的位置。相比之下,我们 H2AK119ub 核小体的 cryoEM 结构显示,泛素采用离散的位置,最小限度地封闭酸性斑。与这些观察结果一致,H2BK120ub 但不是 H2AK119ub,阻断核小体与酸性斑结合蛋白 RCC1 和 LANA 以及针对该区域的单域抗体的相互作用。我们的结果表明了一种机制,即 H2BK120ub 作为酸性斑的守门员,并指出组蛋白 H2AK119 和 H2BK120 泛素化在调节蛋白质与核小体的结合方面发挥着不同的作用。