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Site-Specific Labeling of Enveloped Viruses with Quantum Dots for Single Virus Tracking

机译:使用量子点对包裹病毒进行站点特定标记以进行单个病毒跟踪

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摘要

This study reports a general method of labeling enveloped viruses with semiconductor quantum dots (QDs) for use in single virus trafficking studies. Retroviruses, including human immunodeficiency virus (HIV), could be successfully tagged with QDs through the membrane incorporation of a short acceptor peptide (AP) that is susceptible to site-specific biotinylation and attachment of streptavidin-conjugated QDs. It was found that this AP tag-based QD labeling had little effect on the viral infectivity and allowed for the study of the kinetics of the internalization of the recombinant lentivirus enveloped with vesicular stomatitis virus glycoprotein (VSVG) into the early endosomes. It also allows for the live cell imaging of the trafficking of labeled virus to the Rab5+ endosomal compartments. This study further demonstrated by direct visualization of QD-labeled virus that VSVG-pseudotyped lentivirus enters cells independent of clatherin- and caveolin-pathways, while the entry of VSVG-pseudotyped retrovirus occurs via the clathrin pathway. The studies monitoring HIV particles using QD-labeling showed that we could detect single virions on the surface of target cells expressing either CD4/CCR5 or DC-SIGN. Further internalization studies of QD-HIV evidently showed that the clathrin pathway is the major route for DC-SIGN-mediated uptake of viruses. Taken together, our data demonstrates the potential of this QD-labeling for visualizing the dynamic interactions between viruses and target cell structures.
机译:这项研究报告了一种在单个病毒贩运研究中使用半导体量子点(QD)标记包膜病毒的一般方法。逆转录病毒,包括人类免疫缺陷病毒(HIV),可以通过掺入短受体肽(AP)的膜而成功地被QD标记,该肽易受位点特异性生物素化和链霉亲和素缀合的QD的附着。已经发现,基于AP标签的QD标记对病毒感染性影响很小,并且允许研究被囊泡性口腔炎病毒糖蛋白(VSVG)包裹的重组慢病毒内化到早期内体中的动力学。它还可以对标记病毒向Rab5 + 内体区室的运输进行活细胞成像。这项研究通过QD标记病毒的直接可视化进一步证明,VSVG假型慢病毒进入细胞时不依赖于catherin和Caveolin途径,而VSVG假型逆转录病毒的进入则通过网格蛋白途径发生。使用QD标记监测HIV颗粒的研究表明,我们可以检测到表达CD4 / CCR5或DC-SIGN的靶细胞表面的单个病毒粒子。 QD-HIV的进一步内在化研究显然表明,网格蛋白途径是DC-SIGN介导的病毒摄取的主要途径。综上所述,我们的数据证明了这种QD标记在可视化病毒与靶细胞结构之间动态相互作用方面的潜力。

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