Balusu Ramesh, Jaiswal Aruna S, Armas Melissa L, Kundu Chanakya N, Bloom Linda B, Narayan Satya
Department of Anatomy and Cell Biology, UF Shands Cancer Center, University of Florida, Gainesville, Florida 32610, USA.
Biochemistry. 2007 Dec 11;46(49):13961-74. doi: 10.1021/bi701632e. Epub 2007 Nov 14.
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.
腺瘤性结肠息肉病(APC)基因的突变与结直肠癌的早期发生有关。此前,我们描述了APC多肽在碱基切除修复(BER)中的新作用。单核苷酸(SN)和长片段(LP)BER途径用于修复由应激源(如自发氧化/还原、烷基化和热疗)诱导的DNA中的无碱基位点。我们已经表明,APC与DNA聚合酶β(Pol-β)和瓣状核酸内切酶1(Fen-1)相互作用,并阻断Pol-β指导的链置换合成。在本研究中,我们绘制了Pol-β中APC的相互作用位点,发现Pol-β的苏氨酸79、赖氨酸81和精氨酸83对其与APC的相互作用至关重要。Pol-β蛋白(T79A/K81A/R83A)阻断了以四氢呋喃为DNA底物的链置换DNA合成。我们进一步表明,APC介导的对LP-BER的阻断是由于对Fen-1活性的抑制。对APC介导的对SN-BER的阻断分析表明,APC与Pol-β的相互作用通过抑制Pol-β指导的脱氧核糖磷酸裂解酶活性而阻断了SN-BER活性。总的来说,我们的研究结果表明,APC阻断了Pol-β指导的SN-和LP-BER途径,并增加了细胞对烷基化诱导的DNA损伤的敏感性。