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神秘水螅的DNA修复机制

DNA Repair Repertoire of the Enigmatic Hydra.

作者信息

Barve Apurva, Galande Alisha A, Ghaskadbi Saroj S, Ghaskadbi Surendra

机构信息

Developmental Biology Group, MACS-Agharkar Research Institute, Pune, India.

Centre of Excellence in Science and Mathematics Education, Indian Institute of Science Education and Research (IISER), Pune, India.

出版信息

Front Genet. 2021 Apr 29;12:670695. doi: 10.3389/fgene.2021.670695. eCollection 2021.

Abstract

Since its discovery by Abraham Trembley in 1744, hydra has been a popular research organism. Features like spectacular regeneration capacity, peculiar tissue dynamics, continuous pattern formation, unique evolutionary position, and an apparent lack of organismal senescence make hydra an intriguing animal to study. While a large body of work has taken place, particularly in the domain of evolutionary developmental biology of hydra, in recent years, the focus has shifted to molecular mechanisms underlying various phenomena. DNA repair is a fundamental cellular process that helps to maintain integrity of the genome through multiple repair pathways found across taxa, from archaea to higher animals. DNA repair capacity and senescence are known to be closely associated, with mutations in several repair pathways leading to premature ageing phenotypes. Analysis of DNA repair in an animal like hydra could offer clues into several aspects including hydra's purported lack of organismal ageing, evolution of DNA repair systems in metazoa, and alternative functions of repair proteins. We review here the different DNA repair mechanisms known so far in hydra. Hydra genes from various DNA repair pathways show very high similarity with their vertebrate orthologues, indicating conservation at the level of sequence, structure, and function. Notably, most hydra repair genes are more similar to deuterostome counterparts than to common model invertebrates, hinting at ancient evolutionary origins of repair pathways and further highlighting the relevance of organisms like hydra as model systems. It appears that hydra has the full repertoire of DNA repair pathways, which are employed in stress as well as normal physiological conditions and may have a link with its observed lack of senescence. The close correspondence of hydra repair genes with higher vertebrates further demonstrates the need for deeper studies of various repair components, their interconnections, and functions in this early metazoan.

摘要

自1744年亚伯拉罕·特朗布雷发现水螅以来,水螅一直是一种广受欢迎的研究生物。水螅具有惊人的再生能力、独特的组织动态、持续的模式形成、独特的进化地位以及明显缺乏机体衰老等特征,使其成为一种引人入胜的研究对象。尽管已经开展了大量工作,特别是在水螅的进化发育生物学领域,但近年来,研究重点已转向各种现象背后的分子机制。DNA修复是一个基本的细胞过程,它通过从古细菌到高等动物等各类生物中发现的多种修复途径来帮助维持基因组的完整性。已知DNA修复能力与衰老密切相关,几种修复途径中的突变会导致早衰表型。对水螅这类动物的DNA修复进行分析,可能会在多个方面提供线索,包括水螅据称缺乏机体衰老、后生动物DNA修复系统的进化以及修复蛋白的其他功能。我们在此回顾目前已知的水螅中的不同DNA修复机制。来自各种DNA修复途径的水螅基因与其脊椎动物直系同源基因具有非常高的相似性,这表明在序列、结构和功能水平上具有保守性。值得注意的是,大多数水螅修复基因与后口动物的对应基因比与常见的模式无脊椎动物更相似,这暗示了修复途径的古老进化起源,并进一步凸显了水螅这类生物作为模式系统的相关性。看来水螅拥有完整的DNA修复途径,这些途径在应激以及正常生理条件下都会被采用,并且可能与其观察到的缺乏衰老现象有关。水螅修复基因与高等脊椎动物的密切对应进一步表明,有必要对这个早期后生动物中各种修复成分、它们的相互联系以及功能进行更深入的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aefe/8117345/bff8c3f57617/fgene-12-670695-g001.jpg

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