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SAP1 is a critical post-transcriptional regulator of infectivity in malaria parasite sporozoite stages.

机译:SAP1是疟疾寄生虫子孢子阶段感染的关键转录后调节剂。

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Plasmodium salivary gland sporozoites upregulate expression of a unique subset of genes, collectively called the UIS (upregulated in infectious sporozoites). Many UIS were shown to be essential for early liver stage development, although little is known about their regulation. We previously identified a conserved sporozoite-specific protein, SAP1, which has an essential role in Plasmodium liver infection. Targeted deletion of SAP1 in Plasmodium yoelii caused the depletion of a number of selectively tested UIS transcripts in sporozoites, resulting in a complete early liver stage arrest. Here, we use a global gene expression survey to more comprehensively identify transcripts that are affected by SAP1 deletion. We find an effect upon both the transcript abundance of UIS genes, as well as of select genes previously not grouped as UIS. Importantly, we show that the lack of SAP1 causes the specific degradation of these transcripts. Collectively, our data suggest that SAP1 is involved in a selective post-transcriptional mechanism to regulate the abundance of transcripts critical to the infectivity of sporozoites. Although Pysap1(-) sporozoites are depleted of many of these important transcripts, they confer long-lasting sterile protection against wild-type sporozoite challenge in mice. SAP1 is therefore an appealing candidate locus for attenuation of Plasmodium falciparum.
机译:疟原虫唾液腺子孢子上调独特的基因子集的表达,统称为UIS(在传染性子孢子中上调)。尽管对UIS的调控知之甚少,但许多UIS被证明对肝脏早期发育至关重要。我们以前鉴定了一种保守的子孢子特异性蛋白SAP1,它在疟原虫肝感染中具有重要作用。约氏疟原虫中SAP1的靶向缺失导致子孢子中大量经过选择性测试的UIS转录物被消耗掉,从而导致肝脏早期完全停滞。在这里,我们使用全球基因表达调查来更全面地确定受SAP1缺失影响的转录本。我们发现对UIS基因的转录本丰度以及以前未归类为UIS的选择基因都具有影响。重要的是,我们表明缺少SAP1会导致这些转录本的特定降解。总体而言,我们的数据表明SAP1参与选择性转录后机制,以调节对子孢子的感染性至关重要的转录本的丰度。尽管Pysap1(-)子孢子耗尽了许多重要的转录本,但它们为小鼠提供了针对野生型子孢子激发的长期无菌保护。因此,SAP1是恶性疟原虫减毒的诱人候选位点。

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