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Quantitative chromatin proteomics reveals a dynamic histone post-translational modification landscape that defines asexual and sexual Plasmodium falciparum parasites

机译:定量染色质蛋白质组学揭示了动态的组蛋白翻译后修饰态势该态势定义了无性和有性恶性疟原虫的寄生虫

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摘要

Gene expression in Plasmodia integrates post-transcriptional regulation with epigenetic marking of active genomic regions through histone post-translational modifications (PTMs). To generate insights into the importance of histone PTMs to the entire asexual and sexual developmental cycles of the parasite, we used complementary and comparative quantitative chromatin proteomics to identify and functionally characterise histone PTMs in 8 distinct life cycle stages of P. falciparum parasites. ~500 individual histone PTMs were identified of which 106 could be stringently validated. 46 individual histone PTMs and 30 co-existing PTMs were fully quantified with high confidence. Importantly, 15 of these histone PTMs are novel for Plasmodia (e.g. H3K122ac, H3K27me3, H3K56me3). The comparative nature of the data revealed a highly dynamic histone PTM landscape during life cycle development, with a set of histone PTMs (H3K4ac, H3K9me1 and H3K36me2) displaying a unique and conserved abundance profile exclusively during gametocytogenesis (P < 0.001). Euchromatic histone PTMs are abundant during schizogony and late gametocytes; heterochromatic PTMs mark early gametocytes. Collectively, this data provides the most accurate, complete and comparative chromatin proteomic analyses of the entire life cycle development of malaria parasites. A substantial association between histone PTMs and stage-specific transition provides insights into the intricacies characterising Plasmodial developmental biology.
机译:疟原虫中的基因表达通过组蛋白翻译后修饰(PTM)将转录后调控与活性基因组区域的表观遗传标记整合在一起。为了深入了解组蛋白PTM对寄生虫的整个无性和有性发育周期的重要性,我们使用互补和比较的定量染色质蛋白质组学在恶性疟原虫寄生虫的8个不同生命周期阶段鉴定和功能鉴定组蛋白PTM。鉴定出约500个单独的组蛋白PTM,其中106个可以严格验证。高可信度完全定量了46个单独的组蛋白PTM和30个共存的PTM。重要的是,这些组蛋白PTM中有15个对于疟原虫而言是新颖的(例如H3K122ac,H3K27me3,H3K56me3)。数据的比较性质揭示了在生命周期发展过程中高度动态的组蛋白PTM格局,一组组蛋白PTM(H3K4ac,H3K9me1和H3K36me2)仅在配子生成过程中表现出独特且保守的丰度分布(P <0.001)。常染色体组蛋白PTM在精神分裂和晚期配子细胞中丰富。异色PTM标记早期配子细胞。总体而言,这些数据提供了疟原虫整个生命周期发展过程中最准确,完整和比较的染色质蛋白质组学分析。组蛋白PTM与特定阶段的过渡之间的实质联系为洞悉疟原虫发育生物学的复杂性提供了见识。

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