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疟原虫 Pfprex 可以绕过氧化应激诱导的 DNA 损伤。

Pfprex from Plasmodium falciparum can bypass oxidative stress-induced DNA lesions.

机构信息

Regional Centre for Biotechnology, Faridabad, India.

Kalinga Institute of Industrial Technology, Bhubaneshwar, India.

出版信息

FEBS J. 2022 Sep;289(17):5218-5240. doi: 10.1111/febs.16414. Epub 2022 Mar 11.

Abstract

Apicomplexans such as the malaria parasite Plasmodium falciparum possess a unique organelle known as the apicoplast that has its own circular genome. The apicoplast genome is AT rich and is subjected to oxidative stress from the byproducts of the normal biochemical pathways that operate in the apicoplast. It is expected that oxidative stress will lead to the appearance of DNA lesions such as 2-hydroxydeoxyadenine, thymine glycol, and 8-oxodeoxyguanine in the apicoplast genome. The apicoplast genome is replicated by the DNA polymerase activity present in the Pfprex enzyme. We have named the polymerase module of Pfprex as PfpPol and the enzyme belongs to the A family of DNA polymerases. Similar to other members of this family, PfpPol also exhibits high fidelity of DNA synthesis. We show that this enzyme is also capable of carrying out translesion DNA synthesis past common DNA lesions that arise due to oxidative stress. The residues N505 and Y509 from the fingers sub-domain, which are unique to PfpPol, play an important role in the ability of PfpPol to bypass the three lesions. The observed lesion-bypass ability of the Pfprex enzyme will minimize the adverse effects of oxidative stress on the apicoplast genome of the malaria parasite. These findings also have implications regarding the evolution of the machinery responsible for replication of organellar genomes.

摘要

疟原虫等顶复门生物拥有一种独特的细胞器,称为质体,它有自己的环状基因组。质体基因组富含 AT,并受到质体中正常生化途径副产物产生的氧化应激的影响。预计氧化应激会导致质体基因组中出现 DNA 损伤,如 2-羟脱氧腺嘌呤、胸腺嘧啶二醇和 8-氧脱氧鸟嘌呤。质体基因组通过 Pfprex 酶中存在的 DNA 聚合酶活性进行复制。我们将 Pfprex 的聚合酶结构域命名为 PfpPol,该酶属于 A 家族 DNA 聚合酶。与该家族的其他成员类似,PfpPol 也表现出 DNA 合成的高保真度。我们表明,这种酶还能够在由于氧化应激而产生的常见 DNA 损伤处进行跨损伤 DNA 合成。来自手指亚结构域的独特残基 N505 和 Y509 在 PfpPol 绕过三种损伤的能力中发挥重要作用。Pfprex 酶的观察到的损伤绕过能力将最大限度地减少氧化应激对疟原虫质体基因组的不利影响。这些发现对于负责细胞器基因组复制的机制的进化也具有重要意义。

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