首页> 美国卫生研究院文献>Journal of Virology >Mutagenesis of the Dengue Virus Type 2 NS3 Protein within and outside Helicase Motifs: Effects on Enzyme Activity and Virus Replication
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Mutagenesis of the Dengue Virus Type 2 NS3 Protein within and outside Helicase Motifs: Effects on Enzyme Activity and Virus Replication

机译:在解旋酶基体内外的2型登革热病毒NS3蛋白的诱变:对酶活性和病毒复制的影响

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摘要

The protein NS3 of Dengue virus type 2 (DEN-2) is the second largest nonstructural protein specified by the virus and is known to possess multiple enzymatic activities, including a serine proteinase located in the N-terminal region and an NTPase-helicase in the remaining 70% of the protein. The latter region has seven conserved helicase motifs found in all members of the family Flaviviridae. DEN-2 NS3 lacking the proteinase region was synthesized as a fusion protein with glutathione S-transferase in Escherichia coli. The effects of 10 mutations on ATPase and RNA helicase activity were examined. Residues at four sites within enzyme motifs I, II, and VI were substituted, and six sites outside motifs were altered by clustered charged-to-alanine mutagenesis. The mutations were also tested for their effects on virus replication by incorporation into genomic-length cDNA. Two mutations, both in motif I (G198A and K199A) abolished both ATPase and helicase activity. Two further mutations, one in motif VI (R457A,R458A) and the other a clustered charged-to-alanine substitution at R376KNGK380, abolished helicase activity only. No virus was detected for any mutation which prevented helicase activity, demonstrating the requirement of this enzyme for virus replication. The remaining six mutations resulted in various levels of enzyme activities, and four permitted virus replication. For the two nonreplicating viruses encoding clustered changes at R184KR186 and D436GEE439, we propose that the substituted residues are surface located and that the viruses are defective through altered interaction of NS3 with other components of the viral replication complex. Two of the replicating viruses displayed a temperature-sensitive phenotype. One contained a clustered mutation at D334EE336 and grew too poorly for further characterization. However, virus with an M283F substitution in motif II was examined in a temperature shift experiment (33 to 37°C) and showed reduced RNA synthesis at the higher temperature.
机译:登革热2型病毒(NS-2)的蛋白质NS3是该病毒指定的第二大非结构蛋白,已知具有多种酶促活性,包括位于N端区域的丝氨酸蛋白酶和位于其末端的NTPase-解旋酶。剩下70%的蛋白质。后者区域在黄病毒科的所有成员中都有七个保守的解旋酶基序。缺乏蛋白酶区域的DEN-2 NS3在大肠杆菌中合成为与谷胱甘肽S-转移酶的融合蛋白。检查了10个突变对ATPase和RNA解旋酶活性的影响。酶基序I,II和VI内四个位点的残基被替换,并且基序外的六个位点通过簇状电荷-丙氨酸诱变而改变。还通过掺入基因组长度的cDNA测试了突变对病毒复制的影响。模体I(G198A和K199A)中的两个突变都消除了ATPase和解旋酶的活性。另外两个突变,一个在基序VI中(R457A,R458A),另一个在R376KNGK380处簇集成带电荷的丙氨酸取代,仅消除了解旋酶活性。没有检测到任何病毒,没有阻止解旋酶活性的任何突变,表明该酶需要病毒复制。其余的六个突变导致不同水平的酶活性,并且四个允许病毒复制。对于两种在R184KR186和D436GEE439上编码成簇变化的非复制型病毒,我们建议取代的残基位于表面,并且该病毒通过改变NS3与病毒复制复合体其他成分的相互作用而具有缺陷性。两种复制病毒显示出温度敏感性表型。一个在D334EE336处包含簇状突变,并且生长太差,无法进一步表征。但是,在温度变化实验(33至37°C)中检查了基序II中具有M283F取代的病毒,并显示在较高温度下RNA合成减少。

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