Reverter David, Lima Christopher D
Structural Biology Program, Sloan-Kettering Institute, New York, New York 10021, USA.
Structure. 2004 Aug;12(8):1519-31. doi: 10.1016/j.str.2004.05.023.
Modification of cellular proteins by the ubiquitin-like protein SUMO is essential for nuclear metabolism and cell cycle progression in yeast. X-ray structures of the human Senp2 catalytic protease domain and of a covalent thiohemiacetal transition-state complex obtained between the Senp2 catalytic domain and SUMO-1 revealed details of the respective protease and substrate surfaces utilized in interactions between these two proteins. Comparative biochemical and structural analysis between Senp2 and the yeast SUMO protease Ulp1 revealed differential abilities to process SUMO-1, SUMO-2, and SUMO-3 in maturation and deconjugation reactions. Further biochemical characterization of the three SUMO isoforms into which an additional Gly-Gly di-peptide was inserted, or whereby the respective SUMO tails from the three isoforms were swapped, suggests a strict dependence for SUMO isopeptidase activity on residues C-terminal to the conserved Gly-Gly motif and preferred cleavage site for SUMO proteases.
类泛素蛋白SUMO对细胞蛋白质的修饰对于酵母中的核代谢和细胞周期进程至关重要。人源Senp2催化蛋白酶结构域以及Senp2催化结构域与SUMO-1之间形成的共价硫代半缩醛过渡态复合物的X射线结构揭示了这两种蛋白质相互作用中各自使用的蛋白酶和底物表面的细节。对Senp2和酵母SUMO蛋白酶Ulp1进行的比较生化和结构分析揭示了它们在成熟和去共轭反应中处理SUMO-1、SUMO-2和SUMO-3的不同能力。对三种SUMO亚型进行进一步的生化表征,其中插入了额外的甘氨酰-甘氨酸二肽,或者交换了三种亚型各自的SUMO尾部,结果表明SUMO异肽酶活性严格依赖于保守甘氨酰-甘氨酸基序C端的残基以及SUMO蛋白酶的首选切割位点。