首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A Calpain Unique To Alveolates Is Essential In Plasmodium Falciparum And Its Knockdown Reveals An Involvement In Pre-s-phase Development
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A Calpain Unique To Alveolates Is Essential In Plasmodium Falciparum And Its Knockdown Reveals An Involvement In Pre-s-phase Development

机译:肺泡独特的钙蛋白酶在恶性疟原虫中是必不可少的,其击倒表明参与了前期发育。

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Plasmodium falciparum encodes a single calpain that has a distinct domain composition restricted to alveolates. To evaluate the potential of this protein as a drug target, we assessed its essentiality. Both gene disruption by double cross-over and gene truncation by single cross-over recombination failed. We were also unable to achieve allelic replacement by using a missense mutation at the catalytic cysteine codon, although we could obtain synonymous allelic replacement parasites. These results suggested that the calpain gene and its proteolytic activity are important for optimal parasite growth. To gain further insight into its biological role, we used the FKBP degradation domain system to generate a fusion protein whose stability in transfected parasites could be modulated by a small FKBP ligand, Shield1 (Shldi). We made a calpain-GFP-FKBP fusion through single cross-over integration at the endogenous calpain locus. Calpain levels were knocked down and parasite growth was greatly impaired in the absence of Shld1. Parasites were delayed in their ability to transition out of the ring stage and in their ability to progress to the S phase. Calpain is required for cell cycle progression in Plasmodium parasites and appears to be an attractive drug target. We have shown that regulated knockdowns are possible in P. falciparum and can be useful for evaluating essentiality and function.
机译:恶性疟原虫编码单个钙蛋白酶,该钙蛋白酶具有仅限于肺泡的独特域结构。为了评估这种蛋白质作为药物靶标的潜力,我们评估了其必要性。通过双交换的基因破坏和通过单交换重组的基因截断均失败。我们也无法通过在催化半胱氨酸密码子处使用错义突变来实现等位基因置换,尽管我们可以获得同义的等位基因置换寄生虫。这些结果表明钙蛋白酶基因及其蛋白水解活性对于最佳寄生虫生长很重要。为了进一步了解其生物学作用,我们使用了FKBP降解域系统来生成融合蛋白,其融合蛋白在转染寄生虫中的稳定性可以通过小的FKBP配体Shield1(Shldi)来调节。我们通过在内源钙蛋白酶基因座上的单交换整合来制备钙蛋白酶-GFP-FKBP融合蛋白。在没有Shld1的情况下,降低了钙蛋白酶的水平,大大损害了寄生虫的生长。寄生虫的过渡期和进入S期的能力均受到延迟。钙蛋白酶是疟原虫寄生虫细胞周期发展所必需的,并且似乎是有吸引力的药物靶标。我们已经证明,在恶性疟原虫中可能有调控的敲除,并且可用于评估必需性和功能。

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