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Plasma proteomic analysis of active and torpid greater mouse-eared bats (Myotis myotis)

机译:活跃和具毒力的大老鼠蝙蝠(Myotis myotis)的血浆蛋白质组学分析

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摘要

Hibernation is a physiological adaptation to overcome extreme environmental conditions. It is characterized by prolonged periods of torpor interrupted by temporary arousals during winter. During torpor, body functions are suppressed and restored rapidly to almost pre-hibernation levels during arousal. Although molecular studies have been performed on hibernating rodents and bears, it is unclear how generalizable the results are among hibernating species with different physiology such as bats. As targeted blood proteomic analysis are lacking in small hibernators, we investigated the general plasma proteomic profile of European Myotis myotis and hibernation associated changes between torpid and active individuals by two-dimensional gel electrophoresis. Results revealed an alternation of proteins involved in transport, fuel switching, innate immunity and blood coagulation between the two physiological states. The results suggest that metabolic changes during hibernation are associated with plasma proteomic changes. Further characterization of the proteomic plasma profile identified transport proteins, coagulation proteins and complement factors and detected a high abundance of alpha-fetoprotein. We were able to establish for the first time a basic myotid bat plasma proteomic profile and further demonstrated a modulated protein expression during torpor in Myotis myotis, indicating both novel physiological pathways in bats in general, and during hibernation in particular.
机译:休眠是克服极端环境条件的生理适应。它的特点是在冬季由于短暂的唤醒而中断了长时间的劳动。在吸烟期间,身体功能受到抑制,并在唤醒过程中迅速恢复到几乎冬眠前的水平。尽管已经对冬眠的啮齿动物和熊进行了分子研究,但尚不清楚结果在具有不同生理特性的冬眠物种(如蝙蝠)中的普遍性。由于小型冬眠者缺乏针对性的血液蛋白质组学分析,我们通过二维凝胶电泳研究了欧洲Myotis myotis的一般血浆蛋白质组学特征以及冬眠与活跃个体之间冬眠相关的变化。结果表明,在两种生理状态之间,涉及运输,燃料转换,先天免疫和血液凝固的蛋白质发生了交替。结果表明,冬眠期间的代谢变化与血浆蛋白质组学变化有关。蛋白质组血浆谱的进一步表征鉴定了转运蛋白,凝血蛋白和补体因子,并检测到高含量的甲胎蛋白。我们能够首次建立基本的蝙蝠蝙蝠血浆蛋白质组学特征,并进一步证明了在Myotis myotis的玉米粉蒸干过程中蛋白表达的调节,表明蝙蝠一般都具有新的生理途径,特别是在冬眠期间。

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