Structure/Function Analysis of the Interaction of Adenomatous Polyposis Coli with DNA Polymerase β and Its Implications for Base Excision Repair

基底切除修复术 DNA聚合酶 大肠腺瘤性息肉病 AP站点 分子生物学 DNA聚合酶β 化学 DNA糖基化酶 DNA DNA修复 生物 生物化学 遗传学 癌症 结直肠癌
作者
Ramesh Balusu,Aruna S. Jaiswal,Melissa L. Armas,Chanakya Nath Kundu,Linda B. Bloom,Satya Narayan
出处
期刊:Biochemistry [American Chemical Society]
卷期号:46 (49): 13961-13974 被引量:41
标识
DOI:10.1021/bi701632e
摘要

Mutations in the adenomatous polyposis coli (APC) gene are associated with an early onset of colorectal carcinogenesis. Previously, we described a novel role for the APC polypeptide in base excision repair (BER). The single-nucleotide (SN) and long-patch (LP) BER pathways act to repair the abasic sites in DNA that are induced by stressors, such as spontaneous oxidation/reduction, alkylation, and hyperthermia. We have shown that APC interacts with DNA polymerase beta (Pol-beta) and flap endonuclease 1 (Fen-1) and blocks Pol-beta-directed strand-displacement synthesis. In this study, we have mapped the APC interaction site in Pol-beta and have found that Thr79, Lys81, and Arg83 of Pol-beta were critical for its interaction with APC. The Pol-beta protein (T79A/K81A/R83A) blocked strand-displacement DNA synthesis in which tetrahydrofuran was used as DNA substrate. We further showed that the APC-mediated blockage of LP-BER was due to inhibition of Fen-1 activity. Analysis of the APC-mediated blockage of SN-BER indicated that the interaction of APC with Pol-beta blocked SN-BER activity by inhibiting Pol-beta-directed deoxyribose phosphate lyase activity. Collectively, our findings indicate that APC blocked both Pol-beta-directed SN- and LP-BER pathways and increased sensitivity of cells to alkylation induced DNA damage.
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