Darke P L, Cole J L, Waxman L, Hall D L, Sardana M K, Kuo L C
Department of Antiviral Research, Merck Research Laboratories, West Point, Pennsylvania 19486, USA.
J Biol Chem. 1996 Mar 29;271(13):7445-9. doi: 10.1074/jbc.271.13.7445.
The quaternary state of the human cytomegalovirus (hCMV) protease has been analyzed in relation to its catalysis of peptide hydrolysis. Based on results obtained from steady state kinetics, size exclusion chromatography, and velocity sedimentation, the hCMV protease exists in a monomer-dimer equilibrium. Dimerization of the protease is enhanced by the presence of glycerol and high concentrations of enzyme. Isolation of monomeric and dimeric species eluted from a size exclusion column, followed by immediate assay, identifies the dimer as the active species. Activity measurements conducted with a range of enzyme concentrations are also consistent with a kinetic model in which only the dimeric hCMV protease is active. Using this model, the dissociation constant of the protease is 6.6 microM in 10% glycerol and 0.55 microM in 20% glycerol at 30 degrees C and pH 7.5.
已针对人巨细胞病毒(hCMV)蛋白酶对肽水解的催化作用,分析了其四级结构。基于稳态动力学、尺寸排阻色谱法和速度沉降法获得的结果,hCMV蛋白酶以单体 - 二聚体平衡形式存在。甘油和高浓度酶的存在会增强蛋白酶的二聚化。从尺寸排阻柱洗脱的单体和二聚体物种经分离后立即进行测定,确定二聚体为活性物种。在一系列酶浓度下进行的活性测量也与仅二聚体hCMV蛋白酶具有活性的动力学模型一致。使用该模型,在30℃和pH 7.5条件下,蛋白酶在10%甘油中的解离常数为6.6微摩尔,在20%甘油中的解离常数为0.55微摩尔。