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Design and analysis of post-fusion 6-helix bundle of heptad repeat regions from Newcastle disease virus F protein

机译:新城疫病毒F蛋白七肽重复区融合后6螺旋束的设计和分析

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Fusion of paramyxovirus to the cell involves receptor binding of the HN glycoprotein and a number of conformational changes of F glycoprotein. The F protein is expressed as a homotrimer on the virus surface. In the present model, there are at least three conformations of F protein, i.e. native form, pre-hairpin intermediate and the post-fusion state. In the post-fusion state, the two highly conserved heptad repeat (HR) regions of F protein form a stable 6-helix coiled-coil bundle. However, no crystal structure is known for this state for the Newcastle disease virus, although the crystal structure of the F protein native form has been solved recently. Here we deployed an Escherichia coli in vitro expression system to engineer this 6-helix bundle by fusion of either the two HR regions (HR1, linker and HR2) or linking the 6-helix [3 x (HR1, linker and HR2)] together as a single chain. Subsequently, both of them form a stable 6-helix bundle in vitro judging by gel filtration and chemical cross-linking and the proteins show salient features of an alpha-helix structure. Crystals diffracting X-rays have been obtained from both protein preparations and the structure determination is under way. This method could be used for crystallization of the post-fusion state HR structures of other viruses. [References: 23]
机译:副粘病毒与细胞的融合涉及HN糖蛋白的受体结合和F糖蛋白的许多构象变化。 F蛋白在病毒表面上表达为同源三聚体。在本模型中,至少存在三种F蛋白构象,即天然形式,发夹前中间体和融合后状态。在融合后状态下,F蛋白的两个高度保守的七肽重复(HR)区域形成稳定的6螺旋卷曲螺旋束。但是,尽管最近已经解决了F蛋白天然形式的晶体结构,但对于这种新城疫病毒,尚无晶体结构可知。在这里,我们部署了一个大肠杆菌体外表达系统,通过融合两个HR区(HR1,连接子和HR2)或将6螺旋[3 x(HR1,连接子和HR2)]连接在一起来工程化此6螺旋束。作为一个单链。随后,通过凝胶过滤和化学交联,它们在体外形成稳定的6-螺旋束,并且蛋白质显示出α-螺旋结构的显着特征。从两种蛋白质制备物中都获得了衍射X射线的晶体,并且结构测定正在进行中。该方法可用于其他病毒的融合后状态HR结构的结晶。 [参考:23]

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