Transcription of a centromere-enriched retroelement and local retention of its RNA are significant features of the CENP-A chromatin landscape.

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Genome Biology Pub Date : 2024-11-18 DOI:10.1186/s13059-024-03433-1
B J Chabot, R Sun, A Amjad, S J Hoyt, L Ouyang, C Courret, R Drennan, L Leo, A M Larracuente, L J Core, R J O'Neill, B G Mellone
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Abstract

Background: Centromeres depend on chromatin containing the conserved histone H3 variant CENP-A for function and inheritance, while the role of centromeric DNA repeats remains unclear. Retroelements are prevalent at centromeres across taxa and represent a potential mechanism for promoting transcription to aid in CENP-A incorporation or for generating RNA transcripts to maintain centromere integrity.

Results: In this study, we probe into the transcription and RNA localization of the centromere-enriched retroelement G2/Jockey-3 (hereafter referred to as Jockey-3) in Drosophila melanogaster, currently the only in vivo model with assembled centromeres. We find that Jockey-3 is a major component of the centromeric transcriptome and produces RNAs that localize to centromeres in metaphase. Leveraging the polymorphism of Jockey-3 and a de novo centromere system, we show that these RNAs remain associated with their cognate DNA sequences in cis, suggesting they are unlikely to perform a sequence-specific function at all centromeres. We show that Jockey-3 transcription is positively correlated with the presence of CENP-A and that recent Jockey-3 transposition events have occurred preferentially at CENP-A-containing chromatin.

Conclusions: We propose that Jockey-3 preferentially inserts at the centromere to ensure its own selfish propagation, while contributing to transcription across these regions. Given the conservation of retroelements as centromere components through evolution, our findings may offer a basis for understanding similar associations in other species.

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中心粒富集的逆转录因子的转录及其 RNA 的局部保留是 CENP-A 染色质景观的重要特征。
背景:中心粒的功能和遗传依赖于含有保守组蛋白H3变体CENP-A的染色质,而中心粒DNA重复序列的作用仍不清楚。在不同类群中,中心粒上普遍存在着反转录因子(Retroelements),这是一种促进转录以帮助 CENP-A 融合或产生 RNA 转录本以维持中心粒完整性的潜在机制:在这项研究中,我们探究了黑腹果蝇(目前唯一具有组装中心粒的活体模型)中中心粒丰富的逆转录因子G2/Jockey-3(以下简称Jockey-3)的转录和RNA定位。我们发现,Jockey-3 是中心粒转录组的主要组成部分,它产生的 RNA 在分裂期定位到中心粒。利用 Jockey-3 的多态性和一个全新的中心粒系统,我们发现这些 RNA 与它们的同源 DNA 序列保持顺式关联,这表明它们不太可能在所有中心粒上发挥序列特异性功能。我们发现Jockey-3的转录与CENP-A的存在呈正相关,而且最近的Jockey-3转座事件优先发生在含有CENP-A的染色质上:我们认为,Jockey-3优先插入中心粒,以确保其自身的自私传播,同时促进这些区域的转录。鉴于逆转录素作为中心粒成分在进化过程中的保守性,我们的发现可能为理解其他物种的类似关联提供了基础。
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来源期刊
Genome Biology
Genome Biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
21.00
自引率
3.30%
发文量
241
审稿时长
2 months
期刊介绍: Genome Biology stands as a premier platform for exceptional research across all domains of biology and biomedicine, explored through a genomic and post-genomic lens. With an impressive impact factor of 12.3 (2022),* the journal secures its position as the 3rd-ranked research journal in the Genetics and Heredity category and the 2nd-ranked research journal in the Biotechnology and Applied Microbiology category by Thomson Reuters. Notably, Genome Biology holds the distinction of being the highest-ranked open-access journal in this category. Our dedicated team of highly trained in-house Editors collaborates closely with our esteemed Editorial Board of international experts, ensuring the journal remains on the forefront of scientific advances and community standards. Regular engagement with researchers at conferences and institute visits underscores our commitment to staying abreast of the latest developments in the field.
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