组蛋白变体 H2BE 提高神经元染色质的可及性,促进突触基因表达和长期记忆

IF 14.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
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引用次数: 0

摘要

组蛋白通过多种机制影响基因表达,包括与组蛋白变体交换。最近的研究结果表明,组蛋白变体与神经系统疾病有关,但对大脑中组蛋白变体的研究却很少。最值得注意的是,广泛表达的 H2B 变体仍然难以捉摸。我们应用最近开发的抗体、生化检测和测序方法揭示了 H2B 变体 H2BE 的广泛表达,并确定了它在调节染色质结构、神经元转录和小鼠行为中的作用。我们发现,H2BE 在启动子中富集,一个独特的氨基酸使其能够显著提高染色质的可及性。此外,我们还发现 H2BE 对突触基因表达和长期记忆至关重要。这些数据共同揭示了组蛋白变体与染色质可及性、转录调控、神经元功能和记忆之间的联系机制。这项工作进一步确定了一种广泛表达的 H2B 变体,并揭示了对基因组结构有深远影响的单个组蛋白氨基酸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Histone variant H2BE enhances chromatin accessibility in neurons to promote synaptic gene expression and long-term memory

Histone variant H2BE enhances chromatin accessibility in neurons to promote synaptic gene expression and long-term memory

Histone proteins affect gene expression through multiple mechanisms, including through exchange with histone variants. Recent findings link histone variants to neurological disorders, yet few are well studied in the brain. Most notably, widely expressed variants of H2B remain elusive. We applied recently developed 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. Further, we show that H2BE is critical for synaptic gene expression and long-term memory. Together, these data reveal a mechanism linking histone variants to chromatin accessibility, transcriptional regulation, neuronal function, and memory. This work further identifies a widely expressed H2B variant and uncovers a single histone amino acid with profound effects on genomic structure.

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来源期刊
Molecular Cell
Molecular Cell 生物-生化与分子生物学
CiteScore
26.00
自引率
3.80%
发文量
389
审稿时长
1 months
期刊介绍: Molecular Cell is a companion to Cell, the leading journal of biology and the highest-impact journal in the world. Launched in December 1997 and published monthly. Molecular Cell is dedicated to publishing cutting-edge research in molecular biology, focusing on fundamental cellular processes. The journal encompasses a wide range of topics, including DNA replication, recombination, and repair; Chromatin biology and genome organization; Transcription; RNA processing and decay; Non-coding RNA function; Translation; Protein folding, modification, and quality control; Signal transduction pathways; Cell cycle and checkpoints; Cell death; Autophagy; Metabolism.
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