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DNA连接酶III和XRCC1在调节短片段和长片段碱基切除修复之间转换中的作用。

Roles of DNA ligase III and XRCC1 in regulating the switch between short patch and long patch BER.

作者信息

Petermann Eva, Keil Claudia, Oei Shiao Li

机构信息

Institut für Biochemie, Freie Universität Berlin, Thielallee 63, 14195 Berlin, Federal Republic of Germany.

出版信息

DNA Repair (Amst). 2006 May 10;5(5):544-55. doi: 10.1016/j.dnarep.2005.12.008. Epub 2006 Jan 26.

Abstract

Damaged DNA bases are repaired by base excision repair (BER), which can proceed via two pathways: short patch and long patch BER. During the latter, a stretch of several nucleotides is replaced by strand displacement DNA synthesis. We recently demonstrated that the ATP concentration may govern the decision between these BER sub-pathways. Employing a reconstituted BER complex containing among others DNA polymerase beta (Pol beta), DNA ligase III (Lig III) and XRCC1, here we show that Lig III and XRCC1 are essential mediators of this regulation. XRCC1 stimulates Pol beta strand displacement activity and releases inhibition of Pol beta by DNA-bound Lig III if ligation is prevented. XRCC1 is thus able to strongly promote strand displacement and long patch BER under conditions of ATP shortage. If sufficient ATP is available, ligation by Lig III prevents strand displacement, leading to short patch BER. Ligation-inactive mutants of Lig III do not prevent strand displacement by Pol beta under the same conditions. Consequently, the preferred use of short patch BER depends on the ligation competence of Lig III. Accordingly, lowering the levels of the XRCC1/Lig III complex in HeLa cells using siRNA decreases ligation capacity but enhances Pol beta-dependent DNA synthesis.

摘要

受损的DNA碱基通过碱基切除修复(BER)进行修复,该修复可通过两条途径进行:短补丁和长补丁BER。在长补丁BER过程中,一段几个核苷酸的片段通过链置换DNA合成被替换。我们最近证明,ATP浓度可能决定这些BER子途径之间的选择。利用一种重组的BER复合物,其中包括DNA聚合酶β(Polβ)、DNA连接酶III(Lig III)和XRCC1,我们在此表明Lig III和XRCC1是这种调节的重要介质。如果连接被阻止,XRCC1会刺激Polβ链置换活性并解除DNA结合的Lig III对Polβ的抑制。因此,在ATP短缺的情况下,XRCC1能够强烈促进链置换和长补丁BER。如果有足够的ATP,Lig III的连接会阻止链置换,导致短补丁BER。在相同条件下,Lig III的连接无活性突变体不会阻止Polβ的链置换。因此,短补丁BER的优先使用取决于Lig III的连接能力。相应地,使用小干扰RNA(siRNA)降低HeLa细胞中XRCC1/Lig III复合物的水平会降低连接能力,但会增强Polβ依赖性DNA合成。

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