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通过对卡波西肉瘤相关疱疹病毒感染的高通量单细胞分析揭示的裂解级联反应中的异步进展和细胞内病毒载量变化。

Asynchronous progression through the lytic cascade and variations in intracellular viral loads revealed by high-throughput single-cell analysis of Kaposi's sarcoma-associated herpesvirus infection.

作者信息

Adang Laura A, Parsons Christopher H, Kedes Dean H

机构信息

Myles H. Thaler Center for AIDS and Human Retrovirus Research, Box 800734, Departments of Microbiology and Internal Medicine, University of Virginia Health Systems, Charlottesville, VA 22908, USA.

出版信息

J Virol. 2006 Oct;80(20):10073-82. doi: 10.1128/JVI.01156-06.

Abstract

Kaposi's sarcoma-associated herpesvirus (KSHV or human herpesvirus-8) is frequently tumorigenic in immunocompromised patients. The average intracellular viral copy number within infected cells, however, varies markedly by tumor type. Since the KSHV-encoded latency-associated nuclear antigen (LANA) tethers viral episomes to host heterochromatin and displays a punctate pattern by fluorescence microscopy, we investigated whether accurate quantification of individual LANA dots is predictive of intracellular viral genome load. Using a novel technology that integrates single-cell imaging with flow cytometry, we found that both the number and the summed immunofluorescence of individual LANA dots are directly proportional to the amount of intracellular viral DNA. Moreover, combining viral (immediate early lytic replication and transcription activator [RTA] and late lytic K8.1) and cellular (syndecan-1) staining with image-based flow cytometry, we were also able to rapidly and simultaneously distinguish among cells supporting latent, immediate early lytic, early lytic, late lytic, and a potential fourth "delayed late" category of lytic replication. Applying image-based flow cytometry to KSHV culture models, we found that de novo infection results in highly varied levels of intracellular viral load and that lytic induction of latently infected cells likewise leads to a heterogeneous population at various stages of reactivation. These findings additionally underscore the potential advantages of studying KSHV biology with high-throughput analysis of individual cells.

摘要

卡波西肉瘤相关疱疹病毒(KSHV或人类疱疹病毒8型)在免疫功能低下的患者中常具有致瘤性。然而,受感染细胞内的平均病毒拷贝数因肿瘤类型而异。由于KSHV编码的潜伏相关核抗原(LANA)将病毒附加体与宿主异染色质相连,并通过荧光显微镜呈现点状模式,我们研究了单个LANA点的准确定量是否可预测细胞内病毒基因组负荷。使用一种将单细胞成像与流式细胞术相结合的新技术,我们发现单个LANA点的数量和总免疫荧光均与细胞内病毒DNA的量成正比。此外,将病毒(即刻早期裂解复制和转录激活因子[RTA]以及晚期裂解蛋白K8.1)和细胞(syndecan-1)染色与基于图像的流式细胞术相结合,我们还能够快速且同时区分支持潜伏、即刻早期裂解、早期裂解、晚期裂解以及潜在的第四个“延迟晚期”裂解复制类别的细胞。将基于图像的流式细胞术应用于KSHV培养模型,我们发现初次感染会导致细胞内病毒载量水平高度不同,并且潜伏感染细胞的裂解诱导同样会导致在重新激活的各个阶段出现异质性群体。这些发现进一步强调了通过对单个细胞进行高通量分析来研究KSHV生物学的潜在优势。

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