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线粒体DNA转录起始后会出现暂停现象,并且在不同人类细胞类型以及进化过程中存在差异。

Initiation of mtDNA transcription is followed by pausing, and diverges across human cell types and during evolution.

作者信息

Blumberg Amit, Rice Edward J, Kundaje Anshul, Danko Charles G, Mishmar Dan

机构信息

Department of Life Sciences, Ben-Gurion University of the Negev, Beer Sheva, 84105 Israel.

Baker Institute for Animal Health, Cornell University, Ithaca, New York 14853, USA.

出版信息

Genome Res. 2017 Mar;27(3):362-373. doi: 10.1101/gr.209924.116. Epub 2017 Jan 3.

Abstract

Mitochondrial DNA (mtDNA) genes are long known to be cotranscribed in polycistrones, yet it remains impossible to study nascent mtDNA transcripts quantitatively in vivo using existing tools. To this end, we used deep sequencing (GRO-seq and PRO-seq) and analyzed nascent mtDNA-encoded RNA transcripts in diverse human cell lines and metazoan organisms. Surprisingly, accurate detection of human mtDNA transcription initiation sites (TISs) in the heavy and light strands revealed a novel conserved transcription pausing site near the light-strand TIS. This pausing site correlated with the presence of a bacterial pausing sequence motif, with reduced SNP density, and with a DNase footprinting signal in all tested cells. Its location within conserved sequence block 3 (CSBIII), just upstream of the known transcription-replication transition point, suggests involvement in such transition. Analysis of nonhuman organisms enabled de novo mtDNA sequence assembly, as well as detection of previously unknown mtDNA TIS, pausing, and transcription termination sites with unprecedented accuracy. Whereas mammals (, , , and ) showed a human-like mtDNA transcription pattern, the invertebrate pattern ( and ) profoundly diverged. Our approach paves the path toward in vivo, quantitative, reference sequence-free analysis of mtDNA transcription in all eukaryotes.

摘要

线粒体DNA(mtDNA)基因长期以来被认为是以多顺反子形式共转录的,但使用现有工具在体内对新生的mtDNA转录本进行定量研究仍然是不可能的。为此,我们使用了深度测序(GRO-seq和PRO-seq),并分析了多种人类细胞系和后生动物中的新生mtDNA编码的RNA转录本。令人惊讶的是,对重链和轻链中人类mtDNA转录起始位点(TIS)的准确检测揭示了轻链TIS附近一个新的保守转录暂停位点。这个暂停位点与细菌暂停序列基序的存在、单核苷酸多态性密度降低以及所有测试细胞中的DNase足迹信号相关。它位于保守序列块3(CSBIII)内,就在已知的转录-复制转换点上游,表明其参与了这种转换。对非人类生物的分析实现了从头mtDNA序列组装,以及以前所未有的准确性检测到以前未知的mtDNA TIS、暂停和转录终止位点。虽然哺乳动物(、、和)表现出类似人类的mtDNA转录模式,但无脊椎动物模式(和)则有很大差异。我们的方法为所有真核生物中mtDNA转录的体内、定量、无参考序列分析铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6d2/5340964/ee52c8bd47e1/362f01.jpg

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