Understanding DNA Repair in Hyperthermophilic Archaea: Persistent Gaps and Other Reasons to Focus on the Fork.

IF 2.3 4区 生物学 Q3 MICROBIOLOGY
Archaea-An International Microbiological Journal Pub Date : 2015-06-04 eCollection Date: 2015-01-01 DOI:10.1155/2015/942605
Dennis W Grogan
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引用次数: 44

Abstract

Although hyperthermophilic archaea arguably have a great need for efficient DNA repair, they lack members of several DNA repair protein families broadly conserved among bacteria and eukaryotes. Conversely, the putative DNA repair genes that do occur in these archaea often do not generate the expected phenotype when deleted. The prospect that hyperthermophilic archaea have some unique strategies for coping with DNA damage and replication errors has intellectual and technological appeal, but resolving this question will require alternative coping mechanisms to be proposed and tested experimentally. This review evaluates a combination of four enigmatic properties that distinguishes the hyperthermophilic archaea from all other organisms: DNA polymerase stalling at dU, apparent lack of conventional NER, lack of MutSL homologs, and apparent essentiality of homologous recombination proteins. Hypothetical damage-coping strategies that could explain this set of properties may provide new starting points for efforts to define how archaea differ from conventional models of DNA repair and replication fidelity.

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Abstract Image

Abstract Image

了解超嗜热古细菌的DNA修复:持续的间隙和其他关注叉的原因。
尽管超嗜热古菌可能非常需要高效的DNA修复,但它们缺乏在细菌和真核生物中广泛保守的几个DNA修复蛋白家族的成员。相反,在这些古菌中确实存在的假定的DNA修复基因在删除后通常不会产生预期的表型。超嗜热古菌有一些独特的策略来应对DNA损伤和复制错误的前景具有智力和技术上的吸引力,但解决这个问题将需要提出替代的应对机制并进行实验测试。这篇综述评估了将超嗜热古菌与所有其他生物区分开来的四个神秘特性的组合:DNA聚合酶在dU处停滞,明显缺乏传统的NER,缺乏MutSL同源物,以及同源重组蛋白的明显必要性。假设的损伤应对策略可以解释这组特性,这可能为定义古细菌与传统的DNA修复和复制保真度模型的区别提供了新的起点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.50
自引率
0.00%
发文量
1
审稿时长
>12 weeks
期刊介绍: Archaea is a peer-reviewed, Open Access journal that publishes original research articles as well as review articles dealing with all aspects of archaea, including environmental adaptation, enzymology, genetics and genomics, metabolism, molecular biology, molecular ecology, phylogeny, and ultrastructure. Bioinformatics studies and biotechnological implications of archaea will be considered. Published since 2002, Archaea provides a unique venue for exchanging information about these extraordinary prokaryotes.
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