Department of Biochemistry and Molecular Biology, University of Texas Medical Branch at Galveston, Galveston, Texas 77555, USA.
Department of Biochemistry and Molecular Biology, University of Texas Medical Branch at Galveston, Galveston, Texas 77555, USA
Genes Dev. 2024 Apr 17;38(5-6):213-232. doi: 10.1101/gad.351410.123.
Purified translesion synthesis (TLS) DNA polymerases (Pols) replicate through DNA lesions with a low fidelity; however, TLS operates in a predominantly error-free manner in normal human cells. To explain this incongruity, here we determine whether Y family Pols, which play an eminent role in replication through a diversity of DNA lesions, are incorporated into a multiprotein ensemble and whether the intrinsically high error rate of the TLS Pol is ameliorated by the components in the ensemble. To this end, we provide evidence for an indispensable role of Werner syndrome protein (WRN) and WRN-interacting protein 1 (WRNIP1) in Rev1-dependent TLS by Y family Polη, Polι, or Polκ and show that WRN, WRNIP1, and Rev1 assemble together with Y family Pols in response to DNA damage. Importantly, we identify a crucial role of WRN's 3' → 5' exonuclease activity in imparting high fidelity on TLS by Y family Pols in human cells, as the Y family Pols that accomplish TLS in an error-free manner manifest high mutagenicity in the absence of WRN's exonuclease function. Thus, by enforcing high fidelity on TLS Pols, TLS mechanisms have been adapted to safeguard against genome instability and tumorigenesis.
经纯化的跨损伤合成(TLS)DNA 聚合酶(Pols)以低保真度复制通过 DNA 损伤的 DNA;然而,TLS 在正常人体细胞中主要以无差错的方式运作。为了解释这种不一致,我们在这里确定是否 Y 家族 Pols,它们在通过多种 DNA 损伤进行复制中起着重要作用,是否被整合到一个多蛋白复合物中,以及 TLS Pols 的固有高错误率是否被复合物中的成分改善。为此,我们提供了 Werner 综合征蛋白(WRN)和 WRN 相互作用蛋白 1(WRNIP1)在 Rev1 依赖性 TLS 中通过 Y 家族 Polη、Polι 或 Polκ 对 Y 家族 Pols 的不可或缺的作用的证据,并表明 WRN、WRNIP1 和 Rev1 与 Y 家族 Pols 一起组装以响应 DNA 损伤。重要的是,我们确定了 WRN 的 3'→5'外切酶活性在赋予 Y 家族 Pols 在人类细胞中进行 TLS 时的高保真度方面的关键作用,因为以无差错方式完成 TLS 的 Y 家族 Pols 在缺乏 WRN 的外切酶功能的情况下表现出高诱变率。因此,通过对 TLS Pols 施加高保真度,TLS 机制已被调整以防止基因组不稳定性和肿瘤发生。