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从人类细胞中纯化出的DNA聚合酶θ是一种高保真酶。

DNA polymerase theta purified from human cells is a high-fidelity enzyme.

作者信息

Maga Giovanni, Shevelev Igor, Ramadan Kristijan, Spadari Silvio, Hübscher Ulrich

机构信息

Istituto di Genetica Molecolare IGM-CNR, via Abbiategrasso 207, 27100 Pavia, Italy.

出版信息

J Mol Biol. 2002 May 31;319(2):359-69. doi: 10.1016/S0022-2836(02)00325-X.

Abstract

With the aim to identify unconventional DNA polymerases from human cells, we have set up a special assay to fractionate HeLa extracts based on the ability (i) to bypass DNA lesions, (ii) to be resistant to aphidicolin and an inhibitory antibody against pol alpha and (iii) to be non-responsive to proliferating cell nuclear antigen. After eight different chromatographic steps, an aphidicolin-resistant DNA polymerase activity was obtained that was able to utilize either undamaged or abasic sites-containing DNA with the same efficiency. Biochemical characterization and immunoblot analysis allowed its identification as the human homologue of DNA polymerase theta (hpol theta), whose cDNA has been cloned by homology with the mus308 gene of Drosophila melanogaster but still awaited detailed biochemical characterization. The purified hpol theta was devoid of detectable helicase activity, possessed a 3'-->5' exonuclease activity and showed biochemical properties clearly distinct from any other eukaryotic DNA polymerase known so far. Misincorporation and fidelity assays showed that: (i) hpol theta was able to catalyze efficiently DNA synthesis past an abasic site; and (ii) hpol theta showed high fidelity. Our findings are discussed in light of the proposed physiological role of hpol theta.

摘要

为了从人类细胞中鉴定出非常规的DNA聚合酶,我们建立了一种特殊的检测方法,根据以下能力对HeLa细胞提取物进行分级分离:(i)绕过DNA损伤;(ii)对阿非科林和抗polα抑制性抗体具有抗性;(iii)对增殖细胞核抗原无反应。经过八个不同的色谱步骤后,获得了一种对阿非科林具有抗性的DNA聚合酶活性,该活性能够以相同的效率利用未受损或含有无碱基位点的DNA。生化特性分析和免疫印迹分析表明,它是DNA聚合酶θ(hpolθ)的人类同源物,其cDNA已通过与果蝇mus308基因的同源性克隆得到,但仍有待详细的生化特性分析。纯化后的hpolθ没有可检测到的解旋酶活性,具有3'→5'核酸外切酶活性,并且表现出与迄今为止已知任何其他真核DNA聚合酶明显不同的生化特性。错配和保真度检测表明:(i)hpolθ能够有效地催化DNA合成越过无碱基位点;(ii)hpolθ表现出高保真度。我们根据hpolθ的拟生理作用对这些发现进行了讨论。

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