Sardana V V, Blue J T, Zugay-Murphy J, Sardana M K, Kuo L C
Department of Antiviral Research, Merck Research Laboratories, West Point, Pennsylvania 19486-0004, USA.
Protein Expr Purif. 1999 Aug;16(3):440-7. doi: 10.1006/prep.1999.1090.
The N-terminal domain of the hepatitis C virus (HCV) polyprotein containing the NS3 protease (residues 1027 to 1206) was expressed in Escherichia coli as a soluble protein under the control of the T7 promoter. The enzyme has been purified to homogeneity with cation exchange (SP-Sepharose HR) and heparin affinity chromatography in the absence of any detergent. The purified enzyme preparation was soluble and remained stable in solution for several weeks at 4 degrees C. The proteolytic activity of the purified enzyme was examined, also in the absence of detergents, using a peptide mimicking the NS4A/4B cleavage site of the HCV polyprotein. Hydrolysis of this substrate at the expected Cys-Ala scissile bond was catalyzed by the recombinant protease with a pseudo second-order rate constant (k(cat)/K(M)) of 205 and 196,000 M(-1) s(-1), respectively, in the absence and presence of a central hydrophobic region (sequence represented by residues 21 to 34) of the NS4A protein. The rate constant in the presence of NS4A peptide cofactor was two orders of magnitude greater than reported previously for the NS3 protease domain. A significantly higher activity of the NS3 protease-NS4A cofactor complex was also observed with a substrate mimicking the NS4B/5A site (k(cat)/K(M) of 5180 +/- 670 M(-1) s(-1)). Finally, the optimal formation of a complex between the NS3 protease domain and the cofactor NS4A was critical for the high proteolytic activity observed.
丙型肝炎病毒(HCV)多聚蛋白的N端结构域包含NS3蛋白酶(第1027至1206位氨基酸残基),在T7启动子的控制下于大肠杆菌中表达为可溶性蛋白。该酶通过阳离子交换(SP-琼脂糖凝胶HR)和肝素亲和层析进行纯化,纯化过程中未使用任何去污剂,最终达到了均一性。纯化后的酶制剂可溶,在4℃下可在溶液中稳定保存数周。在不使用去污剂的情况下,使用模拟HCV多聚蛋白NS4A/4B切割位点的肽对纯化酶的蛋白水解活性进行了检测。在不存在和存在NS4A蛋白中心疏水区域(第21至34位氨基酸残基代表的序列)的情况下,重组蛋白酶分别以205和196,000 M⁻¹ s⁻¹的伪二级速率常数(kcat/KM)催化该底物在预期的半胱氨酸-丙氨酸可裂解键处水解。NS4A肽辅因子存在时的速率常数比先前报道的NS3蛋白酶结构域的速率常数大两个数量级。对于模拟NS4B/5A位点的底物(kcat/KM为5180±670 M⁻¹ s⁻¹),也观察到NS3蛋白酶-NS4A辅因子复合物具有明显更高的活性。最后,NS3蛋白酶结构域与辅因子NS4A之间复合物的最佳形成对于所观察到的高蛋白水解活性至关重要。