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Characterization of a Y-Family DNA Polymerase eta from the Eukaryotic Thermophile Alvinella pompejana

机译:真核嗜热菌Alvinella pompejana的Y家族DNA聚合酶η的表征

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摘要

Human DNA polymerase η (HsPolη) plays an important role in translesion synthesis (TLS), which allows for replication past DNA damage such as UV-induced cis-syn cyclobutane pyrimidine dimers (CPDs). Here, we characterized ApPolη from the thermophilic worm Alvinella pompejana, which inhabits deep-sea hydrothermal vent chimneys. ApPolη shares sequence homology with HsPolη and contains domains for binding ubiquitin and proliferating cell nuclear antigen. Sun-induced UV does not penetrate Alvinella's environment; however, this novel DNA polymerase catalyzed efficient and accurate TLS past CPD, as well as 7,8-dihydro-8-oxoguanine and isomers of thymine glycol induced by reactive oxygen species. In addition, we found that ApPolη is more thermostable than HsPolη, as expected from its habitat temperature. Moreover, the activity of this enzyme was retained in the presence of a higher concentration of organic solvents. Therefore, ApPolη provides a robust, human-like Polη that is more active after exposure to high temperatures and organic solvents.
机译:人类DNA聚合酶η(HsPolη)在跨病变合成(TLS)中起着重要作用,该病变可以复制过去的DNA损伤,例如紫外线诱导的顺式-顺式环丁烷嘧啶二聚体(CPD)。在这里,我们从嗜热蠕虫Alvinella pompejana(居住在深海热液喷口烟囱)中表征了ApPolη。 ApPolη与HsPolη具有序列同源性,并包含结合泛素和增殖细胞核抗原的结构域。太阳引起的紫外线不会穿透阿尔维内拉的环境;然而,这种新型的DNA聚合酶催化了CPD之后有效且准确的TLS,以及由活性氧诱导的7,8-二氢-8-氧鸟嘌呤和胸腺嘧啶二醇的异构体。另外,我们发现ApPolη比HsPolη更热稳定,这是根据其栖息地温度所预期的。而且,该酶的活性在较高浓度的有机溶剂存在下得以保留。因此,ApPolη提供了一种坚固的,类似于人的Polη,在暴露于高温和有机溶剂后更具活性。

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