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首页> 外文期刊>DNA repair >DNA polymerases eta and kappa are responsible for error-free translesion DNA synthesis activity over a cis-syn thymine dimer in Xenopus laevis oocyte extracts.
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DNA polymerases eta and kappa are responsible for error-free translesion DNA synthesis activity over a cis-syn thymine dimer in Xenopus laevis oocyte extracts.

机译:DNA聚合酶eta和kappa负责非洲爪蟾卵母细胞提取物中顺式-胸腺嘧啶二聚体的无错转移DNA合成活性。

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摘要

In translesion synthesis (TLS), specialized DNA polymerases (pols) facilitate progression of replication forks stalled by DNA damage. Although multiple TLS pols have been identified in eukaryotes, little is known about endogenous TLS pols and their relative contributions to TLS in vivo because of their low cellular abundance. Taking advantage of Xenopus laevis oocyte cells, with their extraordinary size and abundant enzymes involved in DNA metabolism, we have identified and characterized endogenous TLS pols for DNA damage induced by ultraviolet (UV) irradiation. We designed a TLS assay which monitors primer elongation on a synthetic oligomer template over a single UV-induced lesion, either a cys-syn cyclobutane pyrimidine dimer (CPD) or a pyrimidine (6-4) pyrimidone photoproduct. Four distinct TLS activities (TLS1-TLS4) were identified in X. laevis oocyte extracts, using three template/primer (T/P) DNA substrates having various sites at which primer extension is initiated relative to the lesion. TLS1 and TLS2 activities appear to be sequence-dependent. TLS3 and TLS4 extended the primers over the CPD in an error-free manner irrespective of sequence context. Base insertion opposite the CPD of the T/P substrate in which the 3'-end of the primer is placed one base upstream of the lesion was observed only with TLS3. TLS3 and TLS4 showed primer extension with similar efficiencies on the T/P substrate whose 3'-primer terminal dinucleotide (AA) was complementary to the CPD lesion. Investigations with antibodies and recombinant pols revealed that TLS3 and TLS4 were most likely attributable to pol eta and pol kappa, respectively. These results indicate that error-free insertion in CPD bypass is due mainly to pol eta (TLS3) in the extracts, and suggest that pol kappa (TLS4) may assist pol eta (TLS3) in error-free extension during CPD bypass.
机译:在跨病变合成(TLS)中,专门的DNA聚合酶(pols)促进了因DNA损伤而停滞的复制叉的发展。尽管在真核生物中已鉴定出多个TLS pol,但由于内源性TLS pol及其对体内TLS的相对贡献,人们对其知之甚少,因为它们的细胞丰度低。利用非洲爪蟾卵母细胞的优势,它们具有非凡的大小和参与DNA代谢的丰富酶,我们已经鉴定并鉴定了内源TLS pols对紫外线(UV)辐射诱导的DNA损伤。我们设计了一种TLS检测方法,该方法可监测合成的低聚物模板上单个UV诱导的病变(半胱氨酸-顺式环丁烷嘧啶二聚体(CPD)或嘧啶(6-4)嘧啶酮光产物)上的引物伸长。使用三个模板/引物(T / P)DNA底物在X.laevis卵母细胞提取物中鉴定出四个不同的TLS活性(TLS1-TLS4),底物具有相对于病变起始引物延伸的多个位点。 TLS1和TLS2活动似乎与序列有关。 TLS3和TLS4以无错误的方式在CPD上扩展了引物,而与序列上下文无关。仅在TLS3上观察到与T / P底物的CPD相对的碱基插入,其中引物的3'端位于病变上游一个碱基处。 TLS3和TLS4在T / P底物上具有相似效率的引物延伸,其3'引物末端二核苷酸(AA)与CPD病变互补。对抗体和重组pols的研究表明,TLS3和TLS4最有可能分别归因于pol eta和pol kappa。这些结果表明,CPD旁路中的无错误插入主要归因于提取物中的pol(TLS3),并且表明pol kappa(TLS4)可能有助于pol(TLS3)在CPD旁路过程中的无错误扩展。

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