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DNA聚合酶β依赖的单核苷酸碱基切除修复的碱基置换保真度

The base substitution fidelity of DNA polymerase beta-dependent single nucleotide base excision repair.

作者信息

Matsuda Toshiro, Vande Berg Brian J, Bebenek Katarzyna, Osheroff Wendy P, Wilson Samuel H, Kunkel Thomas A

机构信息

Laboratory of Molecular Genetics and Laboratory of Structural Biology, NIEHS, National Institutes of Health, Research Triangle Park, North Carolina 27709, USA.

出版信息

J Biol Chem. 2003 Jul 11;278(28):25947-51. doi: 10.1074/jbc.C300170200. Epub 2003 May 6.

Abstract

Damaged DNA bases are removed from mammalian genomes by base excision repair (BER). Single nucleotide BER requires several enzymatic activities, including DNA polymerase and 5',2'-deoxyribose-5-phosphate lyase. Both activities are intrinsic to four human DNA polymerases whose base substitution error rate during gap-filling DNA synthesis varies by more than 10,000-fold. This suggests that BER fidelity could vary over a wide range in an enzyme dependent manner. To investigate this possibility, here we describe an assay to measure the fidelity of BER reactions reconstituted with purified enzymes. When human uracil DNA glycosylase, AP endonuclease, DNA polymerase beta, and DNA ligase 1 replace uracil opposite template A or G, base substitution error rates are <or=0.3 to <or=2.8 x 10-4. BER error rates are higher when excess incorrect dNTPs are included in the reaction or when wild type DNA polymerase beta is replaced by DNA polymerase beta variants that fill single nucleotide gaps with lower fidelity. Under these conditions, the base substitution fidelity of polymerase beta-dependent BER is 3-8-fold higher than is single nucleotide gap filling by polymerase beta alone. Thus other proteins in the BER reaction may enhance the base substitution fidelity of DNA polymerase beta during single nucleotide BER.

摘要

受损的DNA碱基通过碱基切除修复(BER)从哺乳动物基因组中被去除。单核苷酸BER需要多种酶活性,包括DNA聚合酶和5',2'-脱氧核糖-5-磷酸裂解酶。这两种活性是四种人类DNA聚合酶所固有的,它们在填补缺口的DNA合成过程中的碱基替换错误率相差超过10000倍。这表明BER保真度可能会以酶依赖的方式在很宽的范围内变化。为了研究这种可能性,我们在此描述一种测定方法,用于测量用纯化酶重建的BER反应的保真度。当人类尿嘧啶DNA糖基化酶、AP内切核酸酶、DNA聚合酶β和DNA连接酶1取代与模板A或G相对的尿嘧啶时,碱基替换错误率≤0.3至≤2.8×10⁻⁴。当反应中包含过量的错误dNTP时,或者当野生型DNA聚合酶β被保真度较低的DNA聚合酶β变体取代时,BER错误率会更高。在这些条件下,依赖聚合酶β的BER的碱基替换保真度比单独由聚合酶β填补单核苷酸缺口时高3至8倍。因此,BER反应中的其他蛋白质可能会在单核苷酸BER过程中提高DNA聚合酶β的碱基替换保真度。

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