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Deep phosphoproteome analysis of Schistosoma mansoni leads development of a kinomic array that highlights sex-biased differences in adult worm protein phosphorylation

机译:Schistosoma Mansoni的深磷脂蛋白酶体探讨了突出了成人蠕虫蛋白磷酸化性偏差的态度阵列的开发

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摘要

Although helminth parasites cause enormous suffering worldwide we know little of how protein phosphorylation, one of the most important post-translational modifications used for molecular signalling, regulates their homeostasis and function. This is particularly the case for schistosomes. Herein, we report a deep phosphoproteome exploration of adult Schistosoma mansoni, providing one of the richest phosphoprotein resources for any parasite so far, and employ the data to build the first parasite-specific kinomic array. Complementary phosphopeptide enrichment strategies were used to detect 15,844 unique phosphopeptides mapping to 3,176 proteins. The phosphoproteins were predicted to be involved in a wide range of biological processes and phosphoprotein interactome analysis revealed 55 highly interconnected clusters including those enriched with ribosome, proteasome, phagosome, spliceosome, glycolysis, and signalling proteins. 93 distinct phosphorylation motifs were identified, with 67 providing a 'footprint' of protein kinase activity; CaMKII, PKA and CK1/2 were highly represented supporting their central importance to schistosome function. Within the kinome, 808 phosphorylation sites were matched to 136 protein kinases, and 68 sites within 37 activation loops were discovered. Analysis of putative protein kinase-phosphoprotein interactions revealed canonical networks but also novel interactions between signalling partners. Kinomic array analysis of male and female adult worm extracts revealed high phosphorylation of transformation:transcription domain associated protein by both sexes, and CDK and AMPK peptides by females. Moreover, eight peptides including protein phosphatase 2C gamma, Akt, Rho2 GTPase, SmTK4, and the insulin receptor were more highly phosphorylated by female extracts, highlighting their possible importance to female worm function. We envision that these findings, tools and methodology will help drive new research into the functional biology of schistosomes and other helminth parasites, and support efforts to develop new therapeutics for their control.
机译:虽然Helminth寄生虫造成巨大的痛苦,但我们很少知道蛋白质磷酸化如何,用于分子信号传导的最重要的翻译后修饰之一,调节其稳态和功能。这是血吸虫的尤其如此。在此,我们报告了迄今为止任何寄生虫的最富磷酸磷蛋白资源的深层磷脂蛋白组探索,并采用数据来构建第一个寄生虫特异性的护版阵列。互补磷酸富集策略用于检测15,844种独特的磷酸肽,映射到3,176蛋白。预计磷蛋白组涉及广泛的生物方法,磷蛋白蛋白酶蛋白酶分析揭示了55个高度相互连接的簇,包括富含核糖体,蛋白酶体,吞噬体,抗磷酸体,糖酵解和信号传导蛋白的簇。鉴定了93个不同的磷酸化基序,67个提供蛋白激酶活性的“足迹”; Camkii,PKA和CK1 / 2高度代表性地支持其对血吸虫功能的中心性。在Kinome内,808个磷酸化位点与136个蛋白激酶匹配,发现37个激活环中的68位点。调用蛋白激酶 - 磷蛋白相互作用的分析揭示了规范网络,但在信号伙伴之间的新的相互作用。雄性和雌性成年蠕虫提取物的Kinomic阵列分析显示,转化的高磷酸化:双重性和CDK和AMPK肽的转录结构域相关蛋白。此外,通过女提取物更高度磷酸化,包括蛋白质磷酸酶2Cγ,AKT,rhO 2 GTP酶,SMTK4和胰岛素受体,包括蛋白磷酸酶2Cγ,AKT,rhO2 GTP酶,SMTK4和胰岛素受体。我们设想这些发现,工具和方法将有助于推动新的研究血吸虫和其他蠕虫寄生虫的功能生物学,并支持努力为其控制开发新的治疗方法。

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