Faculty of Science, Gakushuin University, 1-5-1 Mejiro, Toshima-Ku, Tokyo 171-8588, Japan.
Genes Cells. 2012 Feb;17(2):98-108. doi: 10.1111/j.1365-2443.2011.01576.x.
DNA polymerase η (Polη), whose gene mutation is responsible for the inherited disorder xeroderma pigmentosum variant (XP-V), carries out accurate and efficient translesion synthesis (TLS) across cyclobutane pyrimidine dimer (CPD). As Polη interacts with REV1, and REV1 interacts with other TLS polymerases including Polι, Polκ and Polζ, Polη may play a role in recruitment of these TLS polymerases at lesion site. But it is unclear whether UV sensitivity of XP-V patients is caused not only by defect of Polη activity but also by dysfunction of network between Polη and other TLS polymerases. Here, we examined whether the TLS polymerase network via Polη is important for replicative bypass of CPDs and DNA damage tolerance induced by UV in mouse cells. We observed that UV sensitivity of Polη-deficient mouse cells was moderately rescued by the expression of a catalytically inactive Polη. Moreover, this recovery of cellular UV sensitivity was mediated by the interaction between Polη and REV1. However, expression of the inactive mutant Polη was not able to suppress the incidence of UV-induced mutation observed in Polη-deficient cells. We propose the model that REV1 and Polκ are involved in DNA damage tolerance via Polη-REV1 interaction when Polη fails to bypass its cognate substrates.
DNA 聚合酶 η(Polη),其基因突变负责遗传性疾病着色性干皮病变体(XP-V),能够在环丁烷嘧啶二聚体(CPD)上进行准确和有效的跨损伤合成(TLS)。由于 Polη 与 REV1 相互作用,而 REV1 与其他 TLS 聚合酶(包括 Polι、Polκ 和 Polζ)相互作用,Polη 可能在损伤部位招募这些 TLS 聚合酶中发挥作用。但尚不清楚 XP-V 患者的 UV 敏感性是否不仅是由于 Polη 活性缺陷引起的,还与 Polη 和其他 TLS 聚合酶之间的功能障碍有关。在这里,我们研究了是否通过 Polη 的 TLS 聚合酶网络对于 CPD 的复制旁路以及 UV 诱导的 DNA 损伤耐受在小鼠细胞中很重要。我们观察到 Polη 缺陷型小鼠细胞的 UV 敏感性通过表达无催化活性的 Polη 得到适度挽救。此外,这种细胞对 UV 敏感性的恢复是由 Polη 和 REV1 之间的相互作用介导的。然而,无活性突变体 Polη 的表达不能抑制在 Polη 缺陷型细胞中观察到的 UV 诱导突变的发生率。我们提出了这样的模型,当 Polη 不能绕过其同源底物时,REV1 和 Polκ 通过 Polη-REV1 相互作用参与 DNA 损伤耐受。