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N-腺嘌呤DNA甲基化在……的可变剪接和内共生中的潜在作用

Potential role of N-adenine DNA methylation in alternative splicing and endosymbiosis in .

作者信息

Pan Bo, Ye Fei, Li Tao, Wei Fan, Warren Alan, Wang Yuanyuan, Gao Shan

机构信息

Institute of Evolution & Marine Biodiversity, Ocean University of China, Qingdao 266003, China.

Laboratory for Marine Biology and Biotechnology, Laoshan Laboratory, Qingdao 266237, China.

出版信息

iScience. 2023 Apr 14;26(5):106676. doi: 10.1016/j.isci.2023.106676. eCollection 2023 May 19.

Abstract

N-adenine DNA methylation (6mA), a rediscovered epigenetic mark in eukaryotic organisms, diversifies in abundance, distribution, and function across species, necessitating its study in more taxa. is a typical model organism with endosymbiotic algae of the species This consortium therefore serves as a valuable system to investigate the functional role of 6mA in endosymbiosis, as well as the evolutionary importance of 6mA among eukaryotes. In this study, we report the first genome-wide, base pair-resolution map of 6mA in and identify its methyltransferase PbAMT1. Functionally, 6mA exhibits a bimodal distribution at the 5' end of RNA polymerase II-transcribed genes and possibly participates in transcription by facilitating alternative splicing. Evolutionarily, 6mA co-evolves with gene age and likely serves as a reverse mark of endosymbiosis-related genes. Our results offer new insights for the functional diversification of 6mA in eukaryotes as an important epigenetic mark.

摘要

N-腺嘌呤DNA甲基化(6mA)是真核生物中重新发现的一种表观遗传标记,其丰度、分布和功能在不同物种间存在差异,因此需要在更多分类群中进行研究。是一种具有物种内共生藻类的典型模式生物。因此,这个共生体是研究6mA在共生中的功能作用以及6mA在真核生物中进化重要性的宝贵系统。在本研究中,我们报告了首个全基因组范围内、碱基对分辨率的6mA图谱,并鉴定出其甲基转移酶PbAMT1。在功能上,6mA在RNA聚合酶II转录基因的5'端呈现双峰分布,并可能通过促进可变剪接参与转录。在进化上,6mA与基因年龄共同进化,可能作为与内共生相关基因的反向标记。我们的研究结果为6mA作为真核生物中重要表观遗传标记的功能多样化提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5450/10173741/bb0971c56c05/fx1.jpg

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