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首页> 外文期刊>Molecular Microbiology >Amplification of an alternate transporter gene suppresses the avirulent phenotype of glucose transporter null mutants in Leishmania mexicana.
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Amplification of an alternate transporter gene suppresses the avirulent phenotype of glucose transporter null mutants in Leishmania mexicana.

机译:替代转运蛋白基因的扩增抑制了墨西哥利什曼原虫中葡萄糖转运蛋白无效突变体的无毒表型。

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摘要

A glucose transporter null mutant of the parasitic protozoan Leishmania mexicana, in which three linked glucose transporter genes have been deleted by targeted gene replacement, is unable to replicate as amastigote forms within phagolysomes of mammalian host macrophages and is avirulent. Spontaneous suppressors of the null mutant have been isolated that partially restore replication of parasites within macrophages. These suppressor mutants have amplified the gene for an alternative hexose transporter, the LmGT4 permease (previously called the D2 permease), on a circular extrachromosomal element, and they overexpress LmGT4 mRNA and protein. The suppressors have also regained the ability to transport hexoses, and they have reverted other phenotypes of the null mutant exhibiting enhanced resistance to oxidative killing, heat shock and starvation for nutrients, as well as augmented levels of the storage carbohydrate beta-mannan, increased cell size and increased growth as insect stage promastigotes compared with the unsuppressed mutant. Complementation of the null mutant with the LmGT4 gene on a multicopy episomal expression vector also reverted these phenotypes, confirming that suppression results from amplification of the LmGT4 gene. These results underscore the importance of hexose transporters for the infectious stage of the parasite life cycle.
机译:寄生虫原生动物墨西哥利什曼原虫(Leishmania mexicana)的葡萄糖转运蛋白无效突变体,其中三个连接的葡萄糖转运蛋白基因已通过靶向基因置换而缺失,不能在哺乳动物宿主巨噬细胞的吞噬体中复制为鞭毛体形式,并且是无毒的。已分离出无效突变体的自发抑制子,其部分恢复了巨噬细胞内寄生虫的复制。这些抑制突变体在环形染色体外元件上扩增了另一种己糖转运蛋白LmGT4通透酶(以前称为D2通透酶)的基因,并且它们过表达LmGT4 mRNA和蛋白质。抑制物还恢复了运输己糖的能力,并且它们还还原了无效突变体的其他表型,表现出对营养的氧化杀灭,热休克和饥饿的抵抗力增强,以及储存碳水化合物β-甘露聚糖的水平增加,细胞增多与未抑制的突变体相比,昆虫阶段前鞭毛体的大小和生长增加。多拷贝游离表达载体上的LmGT4基因与空突变体的互补也恢复了这些表型,从而证实了抑制作用是由LmGT4基因的扩增引起的。这些结果强调了己糖转运蛋白对于寄生虫生命周期传染阶段的重要性。

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