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Variable protein homeostasis in housekeeping and non-housekeeping pathways under mycotoxins stress

机译:霉菌毒素胁迫下家务和非家务途径中的可变蛋白质稳态

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摘要

Transcript levels are the primary factor determining protein levels, but for the majority of genes, fold changes in transcript levels are larger than the corresponding changes in protein levels, a phenomenon that is termed “protein homeostasis”. However, this phenomenon is not well characterized in the context of environmental changes. In this study, we sequenced the entire transcriptome and proteome of chicken primary hepatocytes administered three mycotoxin treatments Aflatoxin B1 (AFB1), Ochoratoxin A (OTA) and Zearalenone (ZEN). Each mycotoxin induced unique set of differential expressed transcripts and proteins, suggesting variable cytotoxicity and biochemical action in cell. We found a weak positive correlation between transcript and protein changes, and the transcript changes were higher than the protein changes. Furthermore, we observed pathway-specific protein homeostasis pattern under mycotoxin stress. Specifically, the “Metabolism”, “Transcription” and “Translation” pathways (housekeeping pathways) showed lower fold changes in protein/mRNA levels than non-housekeeping pathways such as “Cell growth and death” and “Immune system”. Protein molecular weight had a weak negative effect on protein production, and this effect was stronger for non-housekeeping pathways. Overall, we hypothesize housekeeping pathways maintain stable protein production for baseline cellular function, whereas non-housekeeping pathways is associated with the fitness response to environmental stress.
机译:转录物水平是决定蛋白质水平的主要因素,但是对于大多数基因而言,转录物水平的倍数变化要大于相应的蛋白质水平变化,这种现象被称为“蛋白质稳态”。但是,这种现象在环境变化的背景下并不能很好地表征。在这项研究中,我们对鸡原代肝细胞经三种真菌毒素处理方法黄曲霉毒素B1(AFB1),O曲霉毒素A(OTA)和玉米赤霉烯酮(ZEN)的整个转录组和蛋白质组进行了测序。每种霉菌毒素都诱导出一组独特的差异表达的转录本和蛋白质,提示细胞中可变的细胞毒性和生化作用。我们发现转录本和蛋白质变化之间的弱正相关,并且转录本变化高于蛋白质变化。此外,我们观察到了霉菌毒素胁迫下的途径特异性蛋白稳态模式。具体而言,“代谢”,“转录”和“翻译”途径(持家途径)显示的蛋白质/ mRNA水平的变化倍数比非持家途径(如“细胞生长和死亡”和“免疫系统”)低。蛋白质分子量对蛋白质产生的负面影响较弱,而对于非持家途径则这种影响更强。总的来说,我们假设管家通路维持基线细胞功能的稳定蛋白质生产,而非管家通路与对环境压力的适应性反应有关。

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