Laboratory of Genomic Instability and Diseases, Department of Infectious Disease Biology, Institute of Life Sciences, Bhubaneswar, 751023, India.
Curr Genet. 2020 Aug;66(4):635-655. doi: 10.1007/s00294-020-01071-1. Epub 2020 Mar 31.
Sixteen eukaryotic DNA polymerases have been identified and studied so far. Based on the sequence similarity of the catalytic subunits of DNA polymerases, these have been classified into four A, B, X and Y families except PrimPol, which belongs to the AEP family. The quaternary structure of these polymerases also varies depending upon whether they are composed of one or more subunits. Therefore, in this review, we used a quaternary structure-based classification approach to group DNA polymerases as either monomeric or multimeric and highlighted functional significance of their accessory subunits. Additionally, we have briefly summarized various DNA polymerase discoveries from a historical perspective, emphasized unique catalytic mechanism of each DNA polymerase and highlighted recent advances in understanding their cellular functions.
目前已鉴定和研究了 16 种真核 DNA 聚合酶。基于 DNA 聚合酶催化亚基的序列相似性,这些聚合酶已被分为 A、B、X 和 Y 四个家族,除了 PrimPol,它属于 AEP 家族。这些聚合酶的四级结构也因它们是由一个或多个亚基组成而有所不同。因此,在本综述中,我们使用基于四级结构的分类方法将 DNA 聚合酶分为单体或多聚体,并强调了它们辅助亚基的功能意义。此外,我们还从历史角度简要总结了各种 DNA 聚合酶的发现,强调了每种 DNA 聚合酶独特的催化机制,并强调了对其细胞功能的理解的最新进展。