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NS2B-D55E和NS2B-E65D变异导致了荧光肽模型中日本脑炎病毒I型和III型之间NS2B-NS3蛋白酶活性的差异。

NS2B-D55E and NS2B-E65D Variations Are Responsible for Differences in NS2B-NS3 Protease Activities Between Japanese Encephalitis Virus Genotype I and III in Fluorogenic Peptide Model.

作者信息

Wahaab Abdul, Zhang Yan, Liu Ke, Rasgon Jason L, Kang Lei, Hameed Muddassar, Li Chenxi, Anwar Muhammad Naveed, Zhang Yanbing, Shoaib Anam, Li Beibei, Qiu Yafeng, Wei Jianchao, Ma Zhiyong

机构信息

Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai 200241, China.

The Department of Entomology, Center for Infectious Disease Dynamics, and the Huck Institutes of the Life Sciences, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Int J Mol Sci. 2024 Nov 26;25(23):12680. doi: 10.3390/ijms252312680.

Abstract

Japanese encephalitis virus (JEV) NS2B-NS3 is a protein complex composed of NS3 proteases and an NS2B co-factor. The N-terminal protease domain (180 residues) of NS3 (NS3(pro)) interacts directly with a central 40-amino acid hydrophilic domain of NS2B (NS2B(H)) to form an active serine protease. In this study, the recombinant NS2B(H)-NS3(pro) proteases were prepared in and used to compare the enzymatic activity between genotype I (GI) and III (GIII) NS2B-NS3 proteases. The GI NS2B(H)-NS3(pro) was able to cleave the sites at the internal C, NS2A/NS2B, NS2B/NS3, and NS3/NS4A junctions that were identical to the sites proteolytically processed by GIII NS2B(H)-NS3(pro). Analysis of the enzymatic activity of recombinant NS2B(H)-NS3(pro) proteases using a model of fluorogenic peptide substrate revealed that the proteolytical processing activity of GIII NS2B(H)-NS3(pro) was significantly higher than that of GI NS2B(H)-NS3(pro). There were eight amino acid variations between GI and GIII NS2B(H)-NS3(pro), which may be responsible for the difference in enzymatic activities between GI and GIII proteases. Therefore, recombinant mutants were generated by exchanging the NS2B(H) and NS3(pro) domains between GI and GIII NS2B(H)-NS3(pro) and subjected to protease activity analysis. Substitution of NS2B(H) significantly altered the protease activities, as compared to the parental NS2B(H)-NS3(pro), suggesting that NS2B(H) played an essential role in the regulation of NS3(pro) protease activity. To further identify the amino acids responsible for the difference in protease activities, multiple substitution mutants including the individual and combined mutations at the variant residues 55 and 65 of NS2B(H) were generated and subjected to protease activity analysis. Replacement of NS2B-55 and NS2B-65 of GI to GIII significantly increased the enzymatic activity of GI NS2B(H)-NS3(pro) protease, whereas mutation of NS2B-55 and NS2B-65 of GIII to GI remarkably reduced the enzymatic activity of GIII NS2B(H)-NS3(pro) protease. Overall, these data demonstrated that NS2B-55 and NS2B-65 variations in the hydrophilic domain of NS2B co-contributed to the difference in NS2B(H)-NS3(pro) protease activities between GI and GIII. However, it will be crucial to explore these mutations in other in vivo and/or in vitro models. Collectively, these observations will be useful for understanding the replication of JEV GI and GIII viruses.

摘要

日本脑炎病毒(JEV)NS2B-NS3是一种由NS3蛋白酶和NS2B辅助因子组成的蛋白质复合物。NS3的N端蛋白酶结构域(180个氨基酸残基)(NS3(pro))直接与NS2B的一个中央40个氨基酸的亲水区(NS2B(H))相互作用,形成一种活性丝氨酸蛋白酶。在本研究中,重组NS2B(H)-NS3(pro)蛋白酶在[具体条件未给出]中制备,并用于比较I型(GI)和III型(GIII)NS2B-NS3蛋白酶之间的酶活性。GI NS2B(H)-NS3(pro)能够切割内部C、NS2A/NS2B、NS2B/NS3和NS3/NS4A连接处的位点,这些位点与GIII NS2B(H)-NS3(pro)蛋白水解加工的位点相同。使用荧光肽底物模型对重组NS2B(H)-NS3(pro)蛋白酶的酶活性进行分析,结果显示GIII NS2B(H)-NS3(pro)的蛋白水解加工活性显著高于GI NS2B(H)-NS3(pro)。GI和GIII NS2B(H)-NS3(pro)之间存在8个氨基酸差异,这可能是GI和GIII蛋白酶酶活性差异的原因。因此,通过交换GI和GIII NS2B(H)-NS3(pro)之间的NS2B(H)和NS3(pro)结构域产生了重组突变体,并进行了蛋白酶活性分析。与亲本NS2B(H)-NS3(pro)相比,NS2B(H)的替换显著改变了蛋白酶活性,这表明NS2B(H)在调节NS3(pro)蛋白酶活性中起重要作用。为了进一步确定导致蛋白酶活性差异的氨基酸,产生了多个替换突变体,包括NS2B(H)变异残基55和65处的单个和组合突变,并进行了蛋白酶活性分析。将GI的NS2B-55和NS2B-65替换为GIII的氨基酸显著提高了GI NS2B(H)-NS3(pro)蛋白酶的酶活性,而将GIII的NS2B-55和NS2B-65突变为GI的氨基酸则显著降低了GIII NS2B(H)-NS3(pro)蛋白酶的酶活性。总体而言,这些数据表明NS2B亲水区的NS2B-55和NS2B-65变异共同导致了GI和GIII之间NS2B(H)-NS3(pro)蛋白酶活性的差异。然而,在其他体内和/或体外模型中探索这些突变至关重要。总的来说,这些观察结果将有助于理解JEV GI和GIII病毒的复制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa9e/11641239/26a26dd9148d/ijms-25-12680-g001a.jpg

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