Potenski Catherine J, Klein Hannah L
Department of Biochemistry and Molecular Pharmacology, New York University School of Medicine, New York, NY 10016, USA.
Department of Biochemistry and Molecular Pharmacology, New York University School of Medicine, New York, NY 10016, USA
Nucleic Acids Res. 2014;42(16):10226-34. doi: 10.1093/nar/gku773. Epub 2014 Aug 26.
Ribonucleotides are misincorporated into replicating DNA due to the similarity of deoxyribonucleotides and ribonucleotides, the high concentration of ribonucleotides in the nucleus and the imperfect accuracy of replicative DNA polymerases in choosing the base with the correct sugar. Embedded ribonucleotides change certain properties of the DNA and can interfere with normal DNA transactions. Therefore, misincorporated ribonucleotides are targeted by the cell for removal. Failure to remove ribonucleotides from DNA results in an increase in genome instability, a phenomenon that has been characterized in various systems using multiple assays. Recently, however, another side to ribonucleotide misincorporation has emerged, where there is evidence for a functional role of misinserted ribonucleotides in DNA, leading to beneficial consequences for the cell. This review examines examples of both positive and negative effects of genomic ribonucleotide misincorporation in various organisms, aiming to highlight the diversity and the utility of this common replication variation.
由于脱氧核糖核苷酸和核糖核苷酸的相似性、细胞核中核糖核苷酸的高浓度以及复制性DNA聚合酶在选择具有正确糖基的碱基时准确性欠佳,核糖核苷酸会错误掺入正在复制的DNA中。嵌入的核糖核苷酸会改变DNA的某些特性,并可能干扰正常的DNA事务。因此,细胞会将错误掺入的核糖核苷酸作为清除目标。未能从DNA中清除核糖核苷酸会导致基因组不稳定性增加,这一现象已在各种系统中通过多种检测方法得以表征。然而,最近核糖核苷酸错误掺入又出现了另一面,有证据表明错误插入的核糖核苷酸在DNA中具有功能性作用,从而给细胞带来有益的结果。本综述考察了各种生物体中基因组核糖核苷酸错误掺入的正面和负面影响的实例,旨在突出这种常见复制变异的多样性和实用性。