Hepatitis C virus NS3/4A with sequence variation at amino-terminus has different serine protease activities and inhibitory activities on IFN-β induction and p53-dependent transcriptional activation

Xueping Wanga , Fujun Lib , Motoko Nagano-Fujii , Lin Deng , Kikumi Kitayamac , Hak Hottac
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Abstract

Objective

To construct the point mutation plasmids expressing HCV NS3/4A with different secondary structures at the N-terminus, and to analyze their serine protease activities.

Methods

The point mutation plasmid constructs were generated by using the Quick Change site-directed mutagenesis kit with the backbone of M-H05-5 (A1-1), and were named as subgroup A1-2, A2-1, A2-2, B1-1, B1-2, B2-1, and B2-2 respectively. The transient expression of the constructs was investigated by immunofluorescence assay and Western blot analysis. The difference in in cis and in trans NS3 serine protease activity between each subgroup was determined by Western blot analysis. Luciferase reporter assay was used to observe the inhibitory effects of the constructs on RIG-I induced IFN-β promoter activity and on p53-dependent transcriptional activation.

Results

The point mutation plasmid constructs were verified for the correct sequence by DNA sequencing. The immunofluorescence assay revealed 4 subcellular localization patterns of NS3, including dot-like staining, diffuse staining, doughnut-like staining, and rod-shape staining. Western blot analysis indicated that the incomplete cleavage of NS3/4A appeared in subgroups A2-1 and B2-1, indicating that the in cis NS3 serine protease activities of subgroup A2-1 and B2-1 were weaker when compared with the other subgroups. By using NS5A/5BΔC as a substrate for NS3/4A serine protease, it was also found that the in trans NS3 serine protease activities of subgroup A2-1 and B2-1 were also weaker compared the other subgroups. Differences in inhibitory effects of HCV NS3 on RIG-I induced IFN-β promoter activity and on p53-dependent transcriptional activation were also observed between subgroup A2-1, B2-1 and the other subgroups.

Conclusion

The results suggest that subgroup A2-1 and B2-1 has weaker serine protease activities and weaker inhibitory activities on host cell functions than the other subgroups, which might be explained by the different secondary structure of the 120-aa sequence at N-terminus of NS3.

在氨基端序列变异的丙型肝炎病毒NS3/4A具有不同的丝氨酸蛋白酶活性和对IFN-β诱导和p53依赖性转录激活的抑制活性
目的构建具有不同n端二级结构的HCV NS3/4A点突变质粒,并分析其丝氨酸蛋白酶活性。方法采用Quick Change定点突变试剂盒构建以M-H05-5 (A1-1)为骨干的点突变质粒,分别命名为A1-2、A2-1、A2-2、B1-1、B1-2、B2-1和B2-2亚群。采用免疫荧光法和Western blot法检测构建体的瞬时表达。Western blot检测各组间顺式、反式NS3丝氨酸蛋白酶活性的差异。荧光素酶报告基因法观察构建体对RIG-I诱导的IFN-β启动子活性和p53依赖性转录激活的抑制作用。结果所构建的点突变质粒经DNA测序证实序列正确。免疫荧光检测显示NS3的4种亚细胞定位模式,包括点样染色、弥漫性染色、甜甜圈样染色和杆状染色。Western blot分析显示A2-1和B2-1亚组出现NS3/ 4a的不完全裂解,表明A2-1和B2-1亚组的顺式NS3丝氨酸蛋白酶活性较其他亚组弱。利用NS5A/5BΔC作为NS3/ 4a丝氨酸蛋白酶的底物,还发现A2-1和B2-1亚组的反式NS3丝氨酸蛋白酶活性也较其他亚组弱。HCV NS3对rig -1诱导的IFN-β启动子活性和p53依赖性转录激活的抑制作用在A2-1、B2-1亚组和其他亚组之间也存在差异。结论与其他亚群相比,A2-1和B2-1亚群的丝氨酸蛋白酶活性和对宿主细胞功能的抑制活性较弱,这可能与NS3 n端120-aa序列的二级结构不同有关。
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