首页> 外文期刊>Journal of proteome research >Proteogenomic Analysis of a Hibernating Mammal Indicates Contribution of Skeletal Muscle Physiology to the Hibernation Phenotype
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Proteogenomic Analysis of a Hibernating Mammal Indicates Contribution of Skeletal Muscle Physiology to the Hibernation Phenotype

机译:冬眠哺乳动物的蛋白质组学分析表明骨骼肌生理对冬眠表型的贡献。

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Mammalian hibernation is a strategy employed by many species to survive fluctuations in resource availability and environmental conditions Hibernating mammals endure conditions of dramatically depressed heart rate, body temperature, and oxygen consumption yet do not show the typical pathological response. Because of the high abundance and metabolic cost of skeletal muscle, not only must it adjust to the constraints of hibernation, but also it is positioned to play a more active role in the initiation and maintenance of the hibernation phenotype. In this study, MS/MS proteomic data from thirteen-lined ground squirrel skeletal muscles were searched against a custom database of transcriptomic and genomic protein predictions built using the platform Galaxy-P. This proteogenomic approach allows for a thorough investigation of skeletal muscle protein abundance throughout their circannual cycle. Of the 1563 proteins identified by these methods, 232 were differentially expressed. These data support previously reported physiological transitions, while also offering new insight into specific mechanisms of how their muscles might be reducing nitrogenous waste, preserving mass and function, and signaling to other tissues. Additionally, the combination of proteomic and transcriptomic data provides unique opportunities for estimating post-transcriptional regulation in skeletal muscle throughout the year and improving genomic annotation for this nonmodel organism.
机译:哺乳动物冬眠是许多物种在资源可利用性和环境条件波动中生存的一种策略,冬眠的哺乳动物忍受着心率,体温和耗氧量急剧下降的条件,但并未表现出典型的病理反应。由于骨骼肌的丰度和代谢成本很高,因此它不仅必须适应冬眠的限制,而且在冬眠表型的启动和维持中起着更加积极的作用。在这项研究中,通过使用平台Galaxy-P构建的转录组和基因组蛋白质预测的自定义数据库,搜索了13条内衬地松鼠骨骼肌的MS / MS蛋白质组学数据。这种蛋白质组学方法可以对骨骼肌蛋白在整个周期中的丰度进行彻底的研究。通过这些方法鉴定的1563种蛋白质中,有232种差异表达。这些数据支持先前报道的生理转变,同时也提供了有关其肌肉如何减少含氮废物,保持质量和功能以及向其他组织发出信号的具体机制的新见解。另外,蛋白质组学和转录组学数据的结合为估计全年骨骼肌的转录后调控以及改善这种非模型生物的基因组注释提供了独特的机会。

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