Baldeck Nadège, Janel-Bintz Régine, Wagner Jérome, Tissier Agnès, Fuchs Robert P, Burkovics Peter, Haracska Lajos, Despras Emmanuelle, Bichara Marc, Chatton Bruno, Cordonnier Agnès M
Biotechnologie et Signalisation Cellulaire, Université de Strasbourg, UMR7242, Illkirch 67412, France.
UMR-S1052, Inserm, Centre de Recherche en Cancérologie de Lyon, Lyon 69000, France.
Nucleic Acids Res. 2015 Feb 27;43(4):2116-25. doi: 10.1093/nar/gkv076. Epub 2015 Feb 6.
Switching between replicative and translesion synthesis (TLS) DNA polymerases are crucial events for the completion of genomic DNA synthesis when the replication machinery encounters lesions in the DNA template. In eukaryotes, the translesional DNA polymerase η (Polη) plays a central role for accurate bypass of cyclobutane pyrimidine dimers, the predominant DNA lesions induced by ultraviolet irradiation. Polη deficiency is responsible for a variant form of the Xeroderma pigmentosum (XPV) syndrome, characterized by a predisposition to skin cancer. Here, we show that the FF483-484 amino acids in the human Polη (designated F1 motif) are necessary for the interaction of this TLS polymerase with POLD2, the B subunit of the replicative DNA polymerase δ, both in vitro and in vivo. Mutating this motif impairs Polη function in the bypass of both an N-2-acetylaminofluorene adduct and a TT-CPD lesion in cellular extracts. By complementing XPV cells with different forms of Polη, we show that the F1 motif contributes to the progression of DNA synthesis and to the cell survival after UV irradiation. We propose that the integrity of the F1 motif of Polη, necessary for the Polη/POLD2 interaction, is required for the establishment of an efficient TLS complex.
当复制机制在DNA模板中遇到损伤时,在复制性DNA聚合酶和跨损伤合成(TLS)DNA聚合酶之间进行切换是完成基因组DNA合成的关键事件。在真核生物中,跨损伤DNA聚合酶η(Polη)在准确绕过环丁烷嘧啶二聚体(紫外线照射诱导的主要DNA损伤)方面发挥着核心作用。Polη缺陷导致着色性干皮病(XPV)综合征的一种变体形式,其特征是易患皮肤癌。在这里,我们表明人类Polη中的FF483 - 484氨基酸(称为F1基序)对于这种TLS聚合酶在体外和体内与复制性DNA聚合酶δ的B亚基POLD2相互作用是必需的。突变该基序会损害细胞提取物中Polη在绕过N - 2 - 乙酰氨基芴加合物和TT - CPD损伤方面的功能。通过用不同形式的Polη补充XPV细胞,我们表明F1基序有助于DNA合成的进行以及紫外线照射后的细胞存活。我们提出,Polη的F1基序的完整性是建立有效的TLS复合物所必需的,而该完整性对于Polη/POLD2相互作用是必要的。