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Generation of rodent malaria parasites with a high mutation rate by destructing proofreading activity of DNA polymerase δ

机译:通过破坏DNA聚合酶δ的校对活性来产生具有高突变率的啮齿动物疟疾寄生虫

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摘要

Plasmodium falciparum malaria imposes a serious public health concern throughout the tropics. Although genetic tools are principally important to fully investigatemalaria parasites, currently available forward and reverse tools are fairly limited. It is expected that parasiteswith a highmutation rate can readilyacquirenovel phenotypes/traits; however, they remain an untapped tool for malaria biology. Here,we generated amutator malaria parasite (hereinafter called a 'malaria mutator'), using site-directed mutagenesis and gene transfection techniques. Amutator Plasmodium berghei line with a defective proofreading 3′ → 5′ exonuclease activity in DNA polymerase δ (referred to as PbMut) and a control P. berghei line with wild-type DNA polymerase δ(referred to as PbCtl) were maintained by weekly passage in ddY mice for 122 weeks. High-throughput genome sequencing analysis revealed that two PbMut lines had 175-178 mutations and a 86- to 90-fold higher mutation rate than that of a PbCtl line. PbMut, PbCtl, and their parent strain, PbWT, showed similar course of infection. Interestingly, PbMut lost the ability to form gametocytes during serial passages. We believe that the malaria mutator system could provide a novel and useful tool to investigate malaria biology.
机译:恶性疟原虫疟疾给整个热带地区带来了严重的公共卫生问题。尽管遗传工具对于全面调查疟原虫至关重要,但目前可用的正反工具相当有限。期望具有高突变率的寄生虫可以轻易获得新的表型/特征。但是,它们仍然是疟疾生物学尚未开发的工具。在这里,我们使用定点诱变和基因转染技术生成了疟原虫的疟原虫(以下简称“疟原虫”)。通过每周传代来维持具有在DNA聚合酶δ(称为PbMut)中的3'→5'核酸外切酶活性的缺陷校正的伯氏疟原虫系和具有野生型DNA聚合酶δ的对照伯氏疟原虫系(称为PbCtl)。在ddY小鼠中持续122周。高通量基因组测序分析显示,两个PbMut品系具有175-178个突变,且突变率比PbCtl品系高86至90倍。 PbMut,PbCtl及其亲本菌株PbWT显示出相似的感染过程。有趣的是,PbMut在连续传代过程中丧失了形成配子细胞的能力。我们认为,疟疾突变系统可以为研究疟疾生物学提供一种新颖而有用的工具。

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