Feierman Emily R, Louzon Sean, Prescott Nicholas A, Biaco Tracy, Gao Qingzeng, Qiu Qi, Choi Kyuhyun, Palozola Katherine C, Voss Anna J, Mehta Shreya D, Quaye Camille N, Lynch Katherine T, Fuccillo Marc V, Wu Hao, David Yael, Korb Erica
Neuroscience Graduate Group, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA.
Department of Genetics, University of Pennsylvania Perelman School of Medicine, Philadelphia, PA.
bioRxiv. 2024 Jun 5:2024.01.29.575103. doi: 10.1101/2024.01.29.575103.
Regulation of histone proteins affects gene expression through multiple mechanisms including exchange with histone variants. However, widely expressed variants of H2B remain elusive. Recent findings link histone variants to neurological disorders, yet few are well studied in the brain. We applied new tools including novel antibodies, biochemical assays, and sequencing approaches to reveal broad expression of the H2B variant H2BE, and defined its role in regulating chromatin structure, neuronal transcription, and mouse behavior. We find that H2BE is enriched at promoters and a single unique amino acid allows it to dramatically enhance chromatin accessibility. Lastly, we show that H2BE is critical for synaptic gene expression and long-term memory. Together, these data reveal a novel mechanism linking histone variants to chromatin regulation, neuronal function, and memory. This work further identifies the first widely expressed H2B variant and uncovers a single histone amino acid with profound effects on genomic structure.
组蛋白的调控通过多种机制影响基因表达,包括与组蛋白变体的交换。然而,广泛表达的H2B变体仍然难以捉摸。最近的研究结果将组蛋白变体与神经系统疾病联系起来,但在大脑中对其进行充分研究的却很少。我们应用了包括新型抗体、生化分析和测序方法在内的新工具,以揭示H2B变体H2BE的广泛表达,并确定了其在调节染色质结构、神经元转录和小鼠行为中的作用。我们发现H2BE在启动子处富集,并且一个独特的氨基酸使其能够显著增强染色质可及性。最后,我们表明H2BE对突触基因表达和长期记忆至关重要。总之,这些数据揭示了一种将组蛋白变体与染色质调控、神经元功能和记忆联系起来的新机制。这项工作进一步鉴定出首个广泛表达的H2B变体,并发现了一个对基因组结构有深远影响的单个组蛋白氨基酸。