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水泡性口炎病毒糖蛋白的构象变化与融合活性:生物膜中[125I]碘萘叠氮化物光标记研究

Conformational changes and fusion activity of vesicular stomatitis virus glycoprotein: [125I]iodonaphthyl azide photolabeling studies in biological membranes.

作者信息

Pak C C, Puri A, Blumenthal R

机构信息

Section of Membrane Structure and Function, Laboratory of Experimental and Computational Biology, Division of Basic Sciences, National Cancer Institute, National Institutes of Health, Frederick, Maryland 21702-1201, USA.

出版信息

Biochemistry. 1997 Jul 22;36(29):8890-6. doi: 10.1021/bi9702851.

Abstract

The interaction of VSV glycoprotein (VSV G) with biological membranes was studied by photosensitized labeling. The method is based on photosensitized activation by the fluorescent lipid analog 3,3'-dioctadecyloxacarbocyanine (DiO) of a hydrophobic probe, [125I]iodonaphthyl azide (125INA), that rapidly partitions into the membrane bilayer of virus and cells. 125INA labeling of proteins and lipids can be confined to the site of chromophore localization by photosensitized labeling. Photoactivation using visible light of target membrane labeled with DiO and 125INA, to which unlabeled virions are bound, results in exclusive labeling of envelope glycoproteins inserted into the target membrane [Pak et al. (1994) J. Biol. Chem. 269, 14614]. In this study, we labeled lipid symmetric erythrocyte ghosts with 125INA and DiO. Photosensitized activation of VSV prebound to labeled ghosts with visible light resulted in VSV G labeling under fusogenic conditions. Photoactivation of 125INA by UV light, which is nonspecific, produced labeled VSV G at both acidic and neutral pH. Photosensitized labeling of VSV G by DiO-125INA-ghosts was also observed at pH 5.5, 4 degrees C, in the absence of mixing between viral and cellular lipids, suggesting insertion of the ectodomain of VSV G. Soluble VSV G lacking the transmembrane domain inserted into DiO-125INA-ghosts under the same conditions as intact VSV G. DiO inserted into intact VSV appeared to be a suitable fluorophore for continuous kinetic measurements of membrane fusion by fluorescence dequenching. Our photosensitized labeling results establish biochemical correlates for the three states of VSV G, which we had proposed based on kinetic data [Clague et al., Biochemistry 29, 1303]. In addition, we found that VSV G insertion into the target membrane is reversible, suggesting a "velcro"-like attachment of the fusogenic domain with the target membrane.

摘要

通过光敏标记研究了水疱性口炎病毒糖蛋白(VSV G)与生物膜的相互作用。该方法基于荧光脂质类似物3,3'-二辛基氧杂羰花青(DiO)对疏水探针[125I]碘萘叠氮化物(125INA)的光敏激活,125INA能迅速分配到病毒和细胞的膜双层中。通过光敏标记,125INA对蛋白质和脂质的标记可局限于发色团定位的部位。用DiO和125INA标记靶膜,再用可见光对结合了未标记病毒粒子的靶膜进行光激活,结果导致插入靶膜的包膜糖蛋白被特异性标记[帕克等人(1994年)《生物化学杂志》269, 14614]。在本研究中,我们用125INA和DiO标记了脂质对称的红细胞血影。用可见光对预先结合到标记血影上的VSV进行光敏激活,在融合条件下导致VSV G被标记。紫外线对125INA的非特异性光激活,在酸性和中性pH条件下均产生标记的VSV G。在pH 5.5、4℃时,在病毒和细胞脂质未混合的情况下,也观察到DiO - 125INA -血影对VSV G的光敏标记,这表明VSV G的胞外结构域发生了插入。缺乏跨膜结构域的可溶性VSV G在与完整VSV G相同的条件下插入DiO - 125INA -血影中。插入完整VSV中的DiO似乎是一种合适的荧光团,可用于通过荧光猝灭对膜融合进行连续动力学测量。我们的光敏标记结果为VSV G的三种状态建立了生化关联,这是我们基于动力学数据提出的[克莱格等人,《生物化学》29, 1303]。此外,我们发现VSV G插入靶膜是可逆的,这表明融合结构域与靶膜之间存在“类似维可牢尼龙搭扣”的附着。

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