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Identifying Novel Cell Cycle Proteins in Apicomplexa Parasites through Co-Expression Decision Analysis

机译:通过共表达决策分析鉴定蚜虫寄生虫中的新型细胞周期蛋白

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Hypothetical proteins comprise roughly half of the predicted gene complement of Toxoplasma gondii and Plasmodium falciparum and represent the largest class of uniquely functioning proteins in these parasites. Following the idea that functional relationships can be informed by the timing of gene expression, we devised a strategy to identify the core set of apicomplexan cell division cycling genes with important roles in parasite division, which includes many uncharacterized proteins. We assembled an expanded list of orthologs from the T. gondii and P. falciparum genome sequences (2781 putative orthologs), compared their mRNA profiles during synchronous replication, and sorted the resulting set of dual cell cycle regulated orthologs (744 total) into protein pairs conserved across many eukaryotic families versus those unique to the Apicomplexa. The analysis identified more than 100 ortholog gene pairs with unknown function in T. gondii and P. falciparum that displayed co-conserved mRNA abundance, dynamics of cyclical expression and similar peak timing that spanned the complete division cycle in each parasite. The unknown cyclical mRNAs encoded a diverse set of proteins with a wide range of mass and showed a remarkable conservation in the internal organization of ordered versus disordered structural domains. A representative sample of cyclical unknown genes (16 total) was epitope tagged in T. gondii tachyzoites yielding the discovery of new protein constituents of the parasite inner membrane complex, key mitotic structures and invasion organelles. These results demonstrate the utility of using gene expression timing and dynamic profile to identify proteins with unique roles in Apicomplexa biology.
机译:假设的蛋白质约占弓形虫和恶性疟原虫的预测基因补体的一半,并代表这些寄生虫中最大的一类独特功能的蛋白质。遵循可以通过基因表达的时机来告知功能关系的想法,我们设计了一种策略来确定在寄生虫分裂中具有重要作用的apicomplexan细胞分裂循环基因的核心集,其中包括许多未表征的蛋白质。我们组装了来自弓形虫和恶性疟原虫基因组序列的直系同源物(2781个推定的直系同源物)的扩展列表,比较了它们在同步复制过程中的mRNA谱,并将双细胞周期调控直系同源物(总共744个)分类为蛋白质对在许多真核生物家族中比较保守,而在复杂的蚜虫中则比较保守。该分析鉴定出100多个直系同源基因对,在刚地弓形虫和恶性疟原虫中功能未知,它们显示出共同保守的mRNA丰度,周期性表达的动力学以及跨越每个寄生虫完整分裂周期的相似峰时间。未知的环状mRNA编码多种蛋白质,具有广泛的质量范围,并且在有序结构域与无序结构域的内部组织中显示出显着的保守性。有代表性的周期性未知基因样品(共16个)被标记为弓形虫速殖子中的表位,从而发现了寄生虫内膜复合物,关键的有丝分裂结构和侵袭细胞器的新蛋白质成分。这些结果证明了使用基因表达时机和动态概况来鉴定在蜂复合生物学中具有独特作用的蛋白质的实用性。

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