Laboratory of Fish Physiology and Genomics, INRA UR1037, Rennes Cedex, France.
Institute of Marine Research, Austevoll Research Station, Storebø, Norway.
Methods Mol Biol. 2021;2218:277-290. doi: 10.1007/978-1-0716-0970-5_22.
Rapid innovations in core proteomic technologies and proteome-based bioinformatics fortified by recent genome sequencing allow the characterization and quantification of proteins on a global scale. These capabilities empower research to develop a more comprehensive understanding of how changes in protein expression and modification can affect complex signaling and regulatory networks. The consequences of these studies have significant implications for understanding how myriad activities are regulated in biological systems.Proteomic approaches have been applied to investigate the physiology, developmental biology, and impact of contaminants in fishes as model organisms. Here, we describe the use of label-free protein quantification and global proteome profiling to characterize eggs of different quality grades in the zebrafish .
核心蛋白质组技术和基于蛋白质组的生物信息学的快速创新,加上最近的基因组测序,使得在全球范围内对蛋白质进行特征描述和定量成为可能。这些能力使研究能够更全面地了解蛋白质表达和修饰的变化如何影响复杂的信号和调节网络。这些研究的结果对理解生物系统中众多活动是如何被调节的具有重要意义。蛋白质组学方法已被应用于研究鱼类作为模式生物的生理学、发育生物学和污染物的影响。在这里,我们描述了使用无标记蛋白定量和全蛋白质组谱分析来描述斑马鱼不同质量等级的卵子。