Kannouche P, Stary A
Genome Damage and Stability Centre, University of Sussex, Falmer, BN1 9RQ Brighton, UK.
Biochimie. 2003 Nov;85(11):1123-32. doi: 10.1016/j.biochi.2003.10.009.
Replicative DNA synthesis is a faithful event which requires undamaged DNA and high fidelity DNA polymerases. If unrepaired damage remains in the template DNA during replication, specialised low fidelity DNA polymerases synthesises DNA past lesions (translesion synthesis, TLS). Current evidence suggests that the polymerase switch from replicative to translesion polymerases might be mediated by post-translational modifications involving ubiquitination processes. One of these TLS polymerases, polymerase eta carries out TLS past UV photoproducts and is deficient in the variant form of xeroderma pigmentosum (XP-V). The dramatic proneness to skin cancer of XP-V individuals highlights the importance of this DNA polymerase in cancer avoidance. The UV hypermutability of XP-V cells suggests that, in the absence of a functional poleta, UV-induced lesions are bypassed by inaccurate DNA polymerase(s) which remain to be identified.
复制性DNA合成是一个精确的过程,需要未受损的DNA和高保真DNA聚合酶。如果在复制过程中模板DNA中仍存在未修复的损伤,专门的低保真DNA聚合酶会越过损伤部位合成DNA(跨损伤合成,TLS)。目前的证据表明,从复制性聚合酶到跨损伤聚合酶的转换可能是由涉及泛素化过程的翻译后修饰介导的。这些跨损伤聚合酶之一,聚合酶η能越过紫外线光产物进行跨损伤合成,在着色性干皮病(XP-V)的变异型中缺乏该酶。XP-V个体患皮肤癌的显著倾向突出了这种DNA聚合酶在预防癌症中的重要性。XP-V细胞的紫外线高突变性表明,在缺乏功能性聚合酶η的情况下,紫外线诱导的损伤会被仍有待确定的不准确的DNA聚合酶绕过。