Murphy Sandra, Dowling Paul, Ohlendieck Kay
Department of Biology, Maynooth University, National University of Ireland, Maynooth, Co. Kildare, Ireland.
Proteomes. 2016 Sep 9;4(3):27. doi: 10.3390/proteomes4030027.
The pioneering work by Patrick H. O'Farrell established two-dimensional gel electrophoresis as one of the most important high-resolution protein separation techniques of modern biochemistry (, , 4007-4021). The application of two-dimensional gel electrophoresis has played a key role in the systematic identification and detailed characterization of the protein constituents of skeletal muscles. Protein changes during myogenesis, muscle maturation, fibre type specification, physiological muscle adaptations and natural muscle aging were studied in depth by the original O'Farrell method or slightly modified gel electrophoretic techniques. Over the last 40 years, the combined usage of isoelectric focusing in the first dimension and sodium dodecyl sulfate polyacrylamide slab gel electrophoresis in the second dimension has been successfully employed in several hundred published studies on gel-based skeletal muscle biochemistry. This review focuses on normal and physiologically challenged skeletal muscle tissues and outlines key findings from mass spectrometry-based muscle proteomics, which was instrumental in the identification of several thousand individual protein isoforms following gel electrophoretic separation. These muscle-associated protein species belong to the diverse group of regulatory and contractile proteins of the acto-myosin apparatus that forms the sarcomere, cytoskeletal proteins, metabolic enzymes and transporters, signaling proteins, ion-handling proteins, molecular chaperones and extracellular matrix proteins.
帕特里克·H·奥法雷尔的开创性工作使二维凝胶电泳成为现代生物化学中最重要的高分辨率蛋白质分离技术之一(,,4007 - 4021)。二维凝胶电泳的应用在骨骼肌蛋白质成分的系统鉴定和详细表征中发挥了关键作用。通过原始的奥法雷尔方法或略有改进的凝胶电泳技术,对肌生成、肌肉成熟、纤维类型特化、生理性肌肉适应和自然肌肉衰老过程中的蛋白质变化进行了深入研究。在过去的40年里,一维等电聚焦和二维十二烷基硫酸钠聚丙烯酰胺平板凝胶电泳的联合使用已成功应用于数百项基于凝胶的骨骼肌生物化学已发表研究中。本综述聚焦于正常和受到生理挑战的骨骼肌组织,并概述了基于质谱的肌肉蛋白质组学的关键发现,该技术有助于在凝胶电泳分离后鉴定数千种个体蛋白质异构体。这些与肌肉相关的蛋白质种类属于构成肌节的肌动球蛋白装置的多种调节蛋白和收缩蛋白、细胞骨架蛋白、代谢酶和转运蛋白、信号蛋白、离子处理蛋白、分子伴侣和细胞外基质蛋白。