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An improved labeling strategy enables automated detection of single-virus fusion and assessment of HIV-1 protease activity in single virions

机译:改进的标记策略可以自动检测单一病毒融合体并评估单一病毒粒子中的HIV-1蛋白酶活性

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摘要

Enveloped viruses transfer their genomes into host cells by fusing their membrane to that of the cell. To visualize single-virus fusion in living cells, researchers take advantage of the proteolytic maturation of HIV, type 1 (HIV-1), which can generate free fluorescent proteins within the viral particle. Co-labeling viruses with a content marker and a fluorescently tagged Vpr (a viral core protein) enables detection of single-virus fusions, but a major limitation of this approach is that not all viral particles incorporate both markers. Here we designed a labeling strategy based on the bifunctional mCherry-2xCL-YFP-Vpr construct, in which 2xCL denotes a tandem cleavage site for the viral protease. This bifunctional marker was efficiently cleaved during virus maturation, producing free mCherry and the core-associated YFP-Vpr. A nearly perfect colocalization of these two markers in virions and their fixed 1:1 ratio enabled automated detection of single-particle fusion in both fixed and live cells based on loss of the mCherry signal. Furthermore, a drop in FRET efficiency between YFP and mCherry because of cleavage of the bifunctional marker, which manifested as a marked shift in the normalized YFP/mCherry fluorescence ratio, reliably predicted viral protease activity in single virions. This feature could discriminate between the particles containing free mCherry, and therefore likely representing mature viruses, and immature particles whose fusion cannot be detected. In summary, our new labeling strategy offers several advantages compared with previous approaches, including increased reliability and throughput of detection of viral fusion. We anticipate that our method will have significant utility for studying viral fusion and maturation.
机译:包膜病毒通过将其膜融合到细胞膜上,将其基因组转移到宿主细胞中。为了可视化活细胞中的单病毒融合,研究人员利用1型HIV(HIV-1)的蛋白水解成熟,可以在病毒颗粒内产生游离的荧光蛋白。使用内容标记和荧光标记的Vpr(病毒核心蛋白)共同标记病毒可以检测单病毒融合体,但是这种方法的主要局限性在于并非所有病毒颗粒都结合了这两种标记。在这里,我们设计了基于双功能mCherry-2xCL-YFP-Vpr构建体的标记策略,其中2xCL表示病毒蛋白酶的串联切割位点。该双功能标记在病毒成熟期间被有效切割,产生了游离的mCherry和与核心相关的YFP-Vpr。这两种标记在病毒粒子中的近乎完美的共定位及其固定的1:1比例,可根据mCherry信号的丢失自动检测固定细胞和活细胞中的单粒子融合。此外,YFP和mCherry之间的FRET效率下降是由于双功能标记的裂解,表现为归一化的YFP / mCherry荧光比率发生了明显变化,可以可靠地预测单个病毒体中的病毒蛋白酶活性。此功能可以区分包含游离mCherry的颗粒(因此可能代表成熟的病毒)和无法检测到融合的未成熟颗粒。总之,与以前的方法相比,我们的新标记策略具有多个优势,包括提高了病毒融合检测的可靠性和通量。我们预期我们的方法将对研究病毒融合和成熟具有重要的实用性。

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