MacNeill Stuart A
School of Biology, University of St Andrews, North Haugh, St Andrews Fife KY16 9ST, U.K.
Emerg Top Life Sci. 2018 Dec 14;2(4):493-501. doi: 10.1042/ETLS20180017.
RecJ proteins belong to the DHH superfamily of phosphoesterases that has members in all three domains of life. In bacteria, the archetypal RecJ is a 5' → 3' ssDNA exonuclease that functions in homologous recombination, base excision repair and mismatch repair, while in eukaryotes, the RecJ-like protein Cdc45 (which has lost its nuclease activity) is a key component of the CMG (Cdc45-MCM-GINS) complex, the replicative DNA helicase that unwinds double-stranded DNA at the replication fork. In archaea, database searching identifies genes encoding one or more RecJ family proteins in almost all sequenced genomes. Biochemical analysis has confirmed that some but not all of these proteins are components of archaeal CMG complexes and has revealed a surprising diversity in mode of action and substrate preference. In addition to this, some archaea encode catalytically inactive RecJ-like proteins, and others a mix of active and inactive proteins, with the inactive proteins being confined to structural roles only. Here, I summarise current knowledge of the structure and function of the archaeal RecJ-like proteins, focusing on similarities and differences between proteins from different archaeal species, between proteins within species and between the archaeal proteins and their bacterial and eukaryotic relatives. Models for RecJ-like function are described and key areas for further study highlighted.
RecJ蛋白属于磷酸二酯酶的DHH超家族,该超家族在生命的三个域中均有成员。在细菌中,典型的RecJ是一种5'→3'单链DNA外切核酸酶,在同源重组、碱基切除修复和错配修复中发挥作用,而在真核生物中,类似RecJ的蛋白Cdc45(已丧失核酸酶活性)是CMG(Cdc45-MCM-GINS)复合物的关键组成部分,CMG复合物是一种复制性DNA解旋酶,可在复制叉处解开双链DNA。在古细菌中,数据库搜索几乎在所有已测序的基因组中都鉴定出编码一种或多种RecJ家族蛋白的基因。生化分析证实,这些蛋白中的一些但不是全部是古细菌CMG复合物的组成部分,并揭示了其作用方式和底物偏好的惊人多样性。除此之外,一些古细菌编码无催化活性的类似RecJ的蛋白,另一些则编码有活性和无活性蛋白的混合物,无活性蛋白仅起结构作用。在此,我总结了目前关于古细菌类似RecJ蛋白的结构和功能的知识,重点关注来自不同古细菌物种的蛋白之间、物种内蛋白之间以及古细菌蛋白与其细菌和真核生物亲属之间的异同。描述了类似RecJ功能的模型,并突出了进一步研究的关键领域。