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组蛋白 H3.3 耗竭对胚胎干细胞中逆转录病毒抑制的差异效应。

Differential effect of histone H3.3 depletion on retroviral repression in embryonic stem cells.

机构信息

Department of Animal Science, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot, Israel.

出版信息

Clin Epigenetics. 2023 May 11;15(1):83. doi: 10.1186/s13148-023-01499-5.

Abstract

BACKGROUND

Integration of retroviruses into the host genome can impair the genomic and epigenomic integrity of the cell. As a defense mechanism, epigenetic modifications on the proviral DNA repress retroviral sequences in mouse embryonic stem cells (ESC). Here, we focus on the histone 3 variant H3.3, which is abundant in active transcription zones, as well as centromeres and heterochromatinized repeat elements, e.g., endogenous retroviruses (ERV).

RESULTS

To understand the involvement of H3.3 in the epigenetic silencing of retroviral sequences in ESC, we depleted the H3.3 genes in ESC and transduced the cells with GFP-labeled MLV pseudovirus. This led to altered retroviral repression and reduced Trim28 recruitment, which consequently led to a loss of heterochromatinization in proviral sequences. Interestingly, we show that H3.3 depletion has a differential effect depending on which of the two genes coding for H3.3, H3f3a or H3f3b, are knocked out. Depletion of H3f3a resulted in a transient upregulation of incoming retroviral expression and ERVs, while the depletion of H3f3b did not have the same effect and repression was maintained. However, the depletion of both genes resulted in a stable activation of the retroviral promoter. These findings suggest that H3.3 is important for regulating retroviral gene expression in mouse ESC and provide evidence for a distinct function of the two H3.3 genes in this regulation. Furthermore, we show that Trim28 is needed for depositing H3.3 in retroviral sequences, suggesting a functional interaction between Trim28 recruitment and H3.3 loading.

CONCLUSIONS

Identifying the molecular mechanisms by which H3.3 and Trim28 interact and regulate retroviral gene expression could provide a deeper understanding of the fundamental processes involved in retroviral silencing and the general regulation of gene expression, thus providing new answers to a central question of stem cell biology.

摘要

背景

逆转录病毒整合到宿主基因组中会损害细胞的基因组和表观基因组完整性。作为一种防御机制,在小鼠胚胎干细胞(ESC)中,对前病毒 DNA 的表观遗传修饰会抑制逆转录病毒序列。在这里,我们专注于组蛋白 3 变体 H3.3,它在活跃转录区以及着丝粒和异染色质化重复元件(例如内源性逆转录病毒(ERV))中丰富。

结果

为了了解 H3.3 在 ESC 中逆转录病毒序列的表观遗传沉默中的作用,我们在 ESC 中耗尽 H3.3 基因,并转导 GFP 标记的 MLV 假病毒。这导致逆转录病毒抑制改变和 Trim28 募集减少,进而导致前病毒序列异染色质化丢失。有趣的是,我们表明 H3.3 的耗竭根据编码 H3.3 的两个基因(H3f3a 或 H3f3b)中的哪一个被敲除而具有不同的效果。H3f3a 的耗竭导致传入逆转录病毒表达和 ERV 的短暂上调,而 H3f3b 的耗竭则没有相同的效果,抑制仍然存在。然而,两个基因的耗竭都会导致逆转录病毒启动子的稳定激活。这些发现表明 H3.3 对于调节小鼠 ESC 中的逆转录病毒基因表达很重要,并为这两个 H3.3 基因在这种调节中的独特功能提供了证据。此外,我们表明 Trim28 对于在逆转录病毒序列中沉积 H3.3 是必需的,这表明 Trim28 募集和 H3.3 加载之间存在功能相互作用。

结论

确定 H3.3 和 Trim28 相互作用并调节逆转录病毒基因表达的分子机制,可以深入了解涉及逆转录病毒沉默和基因表达一般调控的基本过程,从而为干细胞生物学的一个核心问题提供新的答案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e45/10176700/f63cb9aa4600/13148_2023_1499_Fig1_HTML.jpg

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