Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, TX, USA.
Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, TX, USA
Life Sci Alliance. 2021 Jan 29;4(4). doi: 10.26508/lsa.202000900. Print 2021 Apr.
By extending synthesis opposite from a diverse array of DNA lesions, DNA polymerase (Pol) ζ performs a crucial role in translesion synthesis (TLS). In yeast and cancer cells, Rev1 functions as an indispensable scaffolding component of Polζ and it imposes highly error-prone TLS upon Polζ. However, for TLS that occurs during replication in normal human cells, Rev1 functions instead as a scaffolding component of Pols η, ι, and κ and Rev1-dependent TLS by these Pols operates in a predominantly error-free manner. The lack of Rev1 requirement for Polζ function in TLS in normal cells suggested that some other protein substitutes for this Rev1 role. Here, we identify a novel role of Polλ as an indispensable scaffolding component of Polζ. TLS studies opposite a number of DNA lesions support the conclusion that as an integral component, Polλ adapts Polζ-dependent TLS to operate in a predominantly error-free manner in human cells, essential for genome integrity and cellular homeostasis.
通过从多种 DNA 损伤物中进行反向合成,DNA 聚合酶 ζ(Pol ζ)在跨损伤合成(TLS)中发挥了关键作用。在酵母和癌细胞中,Rev1 作为 Pol ζ 不可或缺的支架成分发挥作用,它使 Pol ζ 产生高度易错的 TLS。然而,对于在正常人类细胞中的复制过程中发生的 TLS,Rev1 则作为 Pols η、ι 和 κ 的支架成分发挥作用,这些 Pol 依赖的 TLS 主要以无差错的方式进行。Rev1 对 Pol ζ 在正常细胞中 TLS 功能的缺失表明,存在其他一些蛋白替代了 Rev1 的作用。在此,我们发现了 Polλ 作为 Pol ζ 不可或缺的支架成分的新作用。针对多种 DNA 损伤物的 TLS 研究支持以下结论,即作为一个整体组成部分,Polλ 使 Pol ζ 依赖的 TLS 适应在人类细胞中以主要无差错的方式进行,这对基因组完整性和细胞内稳态至关重要。