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灭活汉坦病毒对衰变加速因子和α(v)β(3)的识别:高通量筛选流式细胞术检测方法的建立。

Recognition of decay accelerating factor and alpha(v)beta(3) by inactivated hantaviruses: Toward the development of high-throughput screening flow cytometry assays.

机构信息

Department of Pathology, University of New Mexico, Albuquerque, 87131, USA.

出版信息

Anal Biochem. 2010 Jul 15;402(2):151-60. doi: 10.1016/j.ab.2010.03.016. Epub 2010 Apr 2.

Abstract

Hantaviruses cause two severe diseases in humans: hemorrhagic fever with renal syndrome (HFRS) and hantavirus cardiopulmonary syndrome (HCPS). The lack of vaccines or specific drugs to prevent or treat HFRS and HCPS and the requirement for conducting experiments in a biosafety level 3 laboratory (BSL-3) limit the ability to probe the mechanism of infection and disease pathogenesis. In this study, we developed a generalizable spectroscopic assay to quantify saturable fluorophore sites solubilized in envelope membranes of Sin Nombre virus (SNV) particles. We then used flow cytometry and live cell confocal fluorescence microscopy imaging to show that ultraviolet (UV)-killed SNV particles bind to the cognate receptors of live virions, namely, decay accelerating factor (DAF/CD55) expressed on Tanoue B cells and alpha(v)beta(3) integrins expressed on Vero E6 cells. SNV binding to DAF is multivalent and of high affinity (K(d) approximately 26pM). Self-exchange competition binding assays between fluorescently labeled SNV and unlabeled SNV are used to evaluate an infectious unit-to-particle ratio of approximately 1:14,000. We configured the assay for measuring the binding of fluorescently labeled SNV to Tanoue B suspension cells using a high-throughput flow cytometer. In this way, we established a proof-of-principle high-throughput screening (HTS) assay for binding inhibition. This is a first step toward developing HTS format assays for small molecule inhibitors of viral-cell interactions as well as dissecting the mechanism of infection in a BSL-2 environment.

摘要

汉坦病毒可引起人类两种严重疾病

肾综合征出血热(HFRS)和汉坦病毒心肺综合征(HCPS)。目前缺乏预防或治疗 HFRS 和 HCPS 的疫苗或特效药物,且需要在生物安全 3 级实验室(BSL-3)中进行实验,这限制了我们探究感染机制和疾病发病机制的能力。在本研究中,我们开发了一种可推广的光谱分析方法,用于定量测定辛诺柏病毒(SNV)颗粒包膜膜中可饱和荧光团的数量。随后,我们使用流式细胞术和活细胞共聚焦荧光显微镜成像技术,显示经紫外线(UV)灭活的 SNV 颗粒可与活病毒颗粒的同源受体结合,即 Tanoue B 细胞上表达的衰变加速因子(DAF/CD55)和 Vero E6 细胞上表达的α(v)β(3)整合素。SNV 与 DAF 的结合具有多价性和高亲和力(K(d)约为 26pM)。用荧光标记的 SNV 和未标记的 SNV 进行的自我交换竞争结合测定用于评估约 1:14000 的感染单位-颗粒比。我们通过使用高通量流式细胞仪来配置测定法,以测量荧光标记的 SNV 与 Tanoue B 悬浮细胞的结合情况。通过这种方式,我们建立了一种用于测定结合抑制的高通量筛选(HTS)分析方法,这是开发用于病毒-细胞相互作用的小分子抑制剂的 HTS 格式分析方法以及在 BSL-2 环境中解析感染机制的第一步。

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