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首页> 外文期刊>Nature Communications >Cyst-Wall-Protein-1 is fundamental for Golgi-like organelle neogenesis and cyst-wall biosynthesis in Giardia lamblia
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Cyst-Wall-Protein-1 is fundamental for Golgi-like organelle neogenesis and cyst-wall biosynthesis in Giardia lamblia

机译:Cyst-Wall-Protein-1是 Giardia lamblia 的高尔基样细胞器新生和囊壁生物合成的基础。

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摘要

The genome of the protozoan parasite Giardia lamblia is organized in two diploid nuclei, which has so far precluded complete analysis of gene function. Here we use a previously developed Cre/ loxP -based knock-out and selection marker salvage strategy in the human-derived isolate WB-C6 to eliminate all four copies of the Cyst-Wall-Protein-1 locus ( CWP1 ). Because these loci are silenced in proliferating trophozoites and highly expressed only in encysting cells, CWP1 ablation allows functional characterization of a conditional phenotype in parasites induced to encyst. We show that encysting Δcwp1 cells are unable to establish the stage-regulated trafficking machinery with Golgi-like encystation-specific vesicles required for cyst-wall formation but show morphological hallmarks of cyst development and karyokinesis. This ‘pseudocyst’ phenotype is rescued by transfection of Δcwp1 cells with an episomally maintained CWP1 expression vector. Genome editing in genera Giardia and Trypanosoma are the only reported examples addressing questions on pathogen transmission within the Excavata supergroup.
机译:原生动物寄生虫贾第鞭毛虫的基因组由两个二倍体核组成,迄今为止,尚无法对基因功能进行全面分析。在这里,我们在人源分离株WB-C6中使用先前开发的基于Cre / loxP的敲除和选择标记挽救策略,以消除Cyst-Wall-Protein-1基因座(CWP1)的所有四个副本。由于这些基因座在滋养体滋养体中沉默并且仅在进入细胞中高度表达,因此CWP1消融允许在诱导包囊的寄生虫中对条件表型进行功能表征。我们显示,包囊Δcwp1细胞无法建立阶段性运输机制与囊壁形成所需的高尔基样入侵序列特定囊泡,但显示出囊肿发展和核运动的形态学特征。通过假性维持的CWP1表达载体转染Δcwp1细胞,可以挽救这种“假性囊肿”表型。贾第鞭毛虫属和锥虫属的基因组编辑是解决Excavata超群内病原体传播问题的唯一报道的例子。

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