Newgard C B, Hwang P K, Fletterick R J
Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas.
Crit Rev Biochem Mol Biol. 1989;24(1):69-99. doi: 10.3109/10409238909082552.
Glycogen phosphorylase plays a central role in the mobilization of carbohydrate reserves in a wide variety of organisms and tissues. While rabbit muscle phosphorylase remains the most studied and best characterized of phosphorylases, recombinant DNA techniques have led to the recent appearance of primary sequence data for a wide variety of phosphorylase enzymes. The functional properties of rabbit muscle phosphorylases are reviewed and then compared to properties of phosphorylases from other tissues and organisms. Tissue expression patterns and the chromosomal localization of mammalian phosphorylases are described. Differences in functional properties among phosphorylases are related to new structural information. Evolutionary relationships among phosphorylases as afforded by comparative analysis of proteins and gene sequences are discussed.
糖原磷酸化酶在多种生物体和组织中碳水化合物储备的动员过程中起着核心作用。虽然兔肌肉磷酸化酶仍是研究最多且特征最明确的磷酸化酶,但重组DNA技术使得最近出现了多种磷酸化酶的一级序列数据。本文对兔肌肉磷酸化酶的功能特性进行了综述,然后与其他组织和生物体的磷酸化酶特性进行了比较。描述了哺乳动物磷酸化酶的组织表达模式和染色体定位。磷酸化酶功能特性的差异与新的结构信息相关。通过对蛋白质和基因序列的比较分析,讨论了磷酸化酶之间的进化关系。