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Role of the Simian Virus 5 Fusion Protein N-Terminal Coiled-Coil Domain in Folding and Promotion of Membrane Fusion

机译:猿猴病毒5融合蛋白N末端螺旋结构域在膜融合的折叠和促进中的作用

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摘要

Formation of a six-helix bundle comprised of three C-terminal heptad repeat regions in antiparallel orientation in the grooves of an N-terminal coiled-coil is critical for promotion of membrane fusion by paramyxovirus fusion (F) proteins. We have examined the effect of mutations in four residues of the N-terminal heptad repeat in the simian virus 5 (SV5) F protein on protein folding, transport, and fusogenic activity. The residues chosen have previously been shown from study of isolated peptides to have differing effects on stability of the N-terminal coiled-coil and six-helix bundle (R. E. Dutch, G. P. Leser, and R. A. Lamb, Virology 254:147-159, 1999). The mutant V154M showed reduced proteolytic cleavage and surface expression, indicating a defect in intracellular transport, though this mutation had no effect when studied in isolated peptides. The mutation I137M, previously shown to lower thermostability of the six-helix bundle, resulted in an F protein which was properly processed and transported to the cell surface but which had reduced fusogenic activity. Finally, mutations at L140M and L161M, previously shown to disrupt α-helix formation of isolated N-1 peptides but not to affect six-helix bundle formation, resulted in F proteins that were properly processed. Interestingly, the L161M mutant showed increased syncytium formation and promoted fusion at lower temperatures than the wild-type F protein. These results indicate that interactions separate from formation of an N-terminal coiled-coil or six-helix bundle are important in the initial folding and transport of the SV5 F protein and that mutations that destabilize the N-terminal coiled-coil can result in stimulation of membrane fusion.
机译:在N末端螺旋线圈的凹槽中以反平行方向形成由三个C末端七肽重复区域组成的六螺旋束,对于通过副粘病毒融合(F)蛋白促进膜融合至关重要。我们已经检查了猿猴病毒5(SV5)F蛋白的N末端七肽重复序列的四个残基中的突变对蛋白质折叠,运输和融合活性的影响。先前从分离的肽的研究中已显示所选的残基对N末端卷曲螺旋和六螺旋束的稳定性具有不同的影响(RE Dutch,GP Leser和RA Lamb,Virology 254:147-159,1999 )。突变体V154M显示出减少的蛋白水解切割和表面表达,表明细胞内运输有缺陷,尽管在分离的肽中研究该突变没有影响。突变I137M先前显示可降低六螺旋束的热稳定性,导致F蛋白经过适当加工并转运至细胞表面,但融合活性降低。最后,先前显示的L140M和L161M处的突变会破坏分离的N-1肽的α-螺旋形成,但不影响六螺旋束的形成,从而导致F蛋白得到正确加工。有趣的是,与野生型F蛋白相比,L161M突变体在较低的温度下显示了合胞体的形成并促进了融合。这些结果表明,与形成N末端卷曲螺旋或六螺旋束分开的相互作用在SV5 F蛋白的初始折叠和运输中很重要,并且破坏N末端卷曲螺旋稳定的突变会导致刺激。膜融合。

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