Orrù S, Dal Piaz F, Casbarra A, Biasiol G, De Francesco R, Steinkühler C, Pucci P
Centro Internazionale di Servizi di Spettrometria di Massa, CNR-Università di Napoli Federico II, Italy.
Protein Sci. 1999 Jul;8(7):1445-54. doi: 10.1110/ps.8.7.1445.
Conformational changes occurring within the NS3 protease domain from the hepatitis C virus Bk strain (NS3(1-180)) under different physico-chemical conditions either in the absence or in the presence of its cofactor Pep4A were investigated by limited proteolysis experiments. Because the surface accessibility of the protein is affected by conformational changes, when comparative experiments were carried out on NS3(1-180) either at different glycerol concentrations or in the presence of Pep4A, differential peptide maps were obtained from which protein regions involved in the structural changes could be inferred. The surface topology of isolated NS3(1-180) in solution was essentially consistent with the crystal structure of the protein with the N-terminal segment showing a high conformational flexibility. At higher glycerol concentration, the protease assumed a more compact structure showing a decrease in the accessibility of the N-terminal segment that either was forced to interact with the protein or originate intermolecular interactions with neighboring molecules. Binding of the cofactor Pep4A caused the displacement of the N-terminal arm from the protein moiety, leading this segment to again adopt an open and flexible conformation, thus suggesting that the N-terminus of the protease contributes only marginally to the stability of the complex. The observed conformational changes might be directly correlated with the activation mechanism of the protease by either the cosolvent or the cofactor peptide because they lead to tighter packing of the substrate binding site.
通过有限蛋白酶解实验,研究了丙型肝炎病毒Bk株的NS3蛋白酶结构域(NS3(1 - 180))在不同物理化学条件下,无论有无辅因子Pep4A时发生的构象变化。由于蛋白质的表面可及性受构象变化影响,因此当在不同甘油浓度下或有Pep4A存在时对NS3(1 - 180)进行对比实验,可获得差异肽图,据此可推断参与结构变化的蛋白质区域。溶液中分离的NS3(1 - 180)的表面拓扑结构与该蛋白质的晶体结构基本一致,其N端片段表现出高度的构象灵活性。在较高甘油浓度下,蛋白酶呈现出更紧凑的结构,N端片段的可及性降低,该片段要么被迫与蛋白质相互作用,要么与相邻分子形成分子间相互作用。辅因子Pep4A的结合导致N端臂从蛋白质部分移位,使该片段再次呈现开放且灵活的构象,这表明蛋白酶的N端对复合物稳定性的贡献很小。观察到的构象变化可能与共溶剂或辅因子肽对蛋白酶的激活机制直接相关,因为它们导致底物结合位点的紧密堆积。