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Functional Characterization of Nucleoside Transporter Gene Replacements in Leishmania donovani

机译:杜氏利什曼原虫中核苷转运蛋白基因置换的功能表征

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摘要

Leishmania donovani express two nucleoside transporters of non-overlapping ligand selectivity. To evaluate the physiological role of nucleoside transporters in L. donovani, homozygous null mutants of the genes encoding the LdNT1 adenosine-pyrimidine nucleoside transporter and the LdNT2 inosine-guanosine transporter were created singly and in combination by single targeted gene replacement followed by selection for loss-of-heterozygosity. The mutant alleles were verified by Southern blotting, and the effects of gene replacement on transport phenotype were evaluated by rapid sampling transport measurements and by drug resistance profiles. The Δldnt1, Δldnt2, and Δldnt1/Δldnt2 mutants were all capable of proliferation in defined culture medium supplemented with any of a spectrum of purine nucleobases or nucleosides, except that a Δldnt2 lesion conferred an inability to efficiently salvage exogenous xanthosine, a newly discovered ligand of LdNT2. Each of the three knockout strains was viable as promastigotes and axenic amastigotes and capable of maintaining an infection in J774 and bone marrow-derived murine macrophages. These genetic studies demonstrate: 1) that L. donovani promastigotes, axenic amastigotes, and tissue amastigotes are viable in the absence of nucleoside transport; 2) that nucleoside transporters are not essential for sustaining an infection in mammalian host cells; and 3) that the phagolysosome of macrophages is likely to contain purines that are not LdNT1 or LdNT2 ligands, i.e., nucleobases. Furthermore, the Δldnt1, Δldnt2, and Δldnt1/Δldnt2 knockouts offer a unique genetically defined null background for the biochemical and genetic characterization of nucleoside transporter genes and cDNAs from phylogenetically diverse species and of genetically manipulated LdNT1 and LdNT2 constructs.
机译:利什曼原虫donovani表达两个不重叠配体选择性的核苷转运蛋白。为了评估核苷转运蛋白在杜氏疟原虫中的生理作用,分别创建了LdNT1腺苷-嘧啶核苷转运蛋白和LdNT2肌苷-鸟苷转运蛋白的编码基因的纯合无效突变体,并通过单个靶向基因置换然后选择缺失进行组合杂合性。突变的等位基因通过Southern印迹进行验证,并通过快速采样转运测量和药物耐药性分析评估基因替代对转运表型的影响。 Δldnt1,Δldnt2和Δldnt1/Δldnt2突变体均能够在添加了嘌呤核苷或核苷谱的任何培养基中的特定培养基中增殖,除了Δldnt2病变导致无法有效挽救新发现的黄嘌呤配体外源黄嘌呤LdNT2。三种敲除菌株中的每一种都可以作为前鞭毛体和轴突性变形虫生存,并能够维持J774和骨髓源性鼠巨噬细胞的感染。这些遗传学研究表明:1)在没有核苷转运的情况下,杜氏乳酸杆菌前鞭毛体,轴突性扁桃体和组织扁桃体是可行的; 2)核苷转运蛋白对于维持哺乳动物宿主细胞中的感染不是必需的; 3)巨噬细胞的吞噬溶酶体可能含有不是LdNT1或LdNT2配体的嘌呤,即核碱基。此外,Δldnt1,Δldnt2和Δldnt1/Δldnt2敲除提供了独特的遗传定义的无效背景,用于系统发育多样性物种以及经遗传操纵的LdNT1和LdNT2构建体的核苷转运蛋白基因和cDNA的生化和遗传表征。

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