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Transgenic Fluorescent Leishmania mexicana Allow Direct Analysis of the Proteome of Intracellular Amastigotes

机译:转基因荧光利什曼原虫可以直接分析胞内变形虫的蛋白质组。

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摘要

Investigating the proteome of intracellular pathogens is often hampered by inadequate methodologies to purify the pathogen free of host cell material. This has also precluded direct proteome analysis of the intracellular, amastigote form of Leishmania spp., protozoan parasites that cause a spectrum of diseases that affect some 12 million patients worldwide. Here a method is presented that combines classic, isopycnic density centrifugation with fluorescent particle sorting for purification by exploiting transgenic, fluorescent parasites to allow direct proteome analysis of the purified organisms. By this approach the proteome of intracellular Leishmania mexicana amastigotes was compared with that of extracellular promastigotes that are transmitted by insect vectors. In total, 509 different proteins were identified by mass spectrometry and database search. This number corresponds to ∼6% of gene products predicted from the reference genome of Leishmania major. Intracellular amastigotes synthesized significantly more proteins with basic pI and showed a greater abundance of enzymes of fatty acid catabolism, which may reflect their living in acidic habitats and metabolic adaptation to nutrient availability, respectively. Bioinformatics analyses of the genes corresponding to the protein data sets produced clear evidence for skewed codon usage and translational bias in these organisms. Moreover analysis of the subset of genes whose products were more abundant in amastigotes revealed characteristic sequence motifs in 3′-untranslated regions that have been linked to translational control elements. This suggests that proteome data sets may be used to identify regulatory elements in mRNAs. Last but not least, at 6% coverage the proteome identified all vaccine antigens tested to date. Thus, the present data set provides a valuable resource for selection of candidate vaccine antigens.
机译:细胞内病原体的蛋白质组研究常常受到不充分的方法纯化的困扰,这些方法无法纯化不含宿主细胞物质的病原体。这也排除了直接蛋白质组学分析利什曼原虫(Leishmania spp。)原生动物寄生虫的细胞内,鞭毛体形式的原因,这些寄生虫引起一系列影响全球约1200万患者的疾病。本文介绍了一种方法,该方法将经典的等密度密度离心与荧光颗粒分选相结合,通过利用转基因荧光寄生虫进行纯化,从而可以对纯化的生物体进行直接的蛋白质组分析。通过这种方法,将细胞内墨西哥利什曼原虫amastigotes的蛋白质组与通过昆虫载体传播的细胞外protigtigote的蛋白质组进行了比较。通过质谱和数据库搜索,总共鉴定出509种不同的蛋白质。该数目约占利什曼原虫参考基因组预测基因产物的6%。细胞内变形虫可合成更多具有基本pI的蛋白质,并显示出更多的脂肪酸分解代谢酶,这可能分别反映了它们在酸性生境中的生活和对养分有效性的代谢适应。对与蛋白质数据集相对应的基因的生物信息学分析为这些生物中的偏斜密码子使用和翻译偏倚提供了清晰的证据。此外,对在变形虫中产物更丰富的基因子集的分析揭示了与翻译控制元件相连的3'-非翻译区的特征序列基序。这表明蛋白质组数据集可用于鉴定mRNA中的调控元件。最后但并非最不重要的一点是,蛋白质组覆盖率达6%,可识别迄今为止测试的所有疫苗抗原。因此,本数据集为选择候选疫苗抗原提供了宝贵的资源。

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