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基于含有牛白血病病毒长末端重复 U3 区糖皮质激素反应元件突变的报告质粒的敏感发光合胞体诱导测定(LuSIA)。

A sensitive luminescence syncytium induction assay (LuSIA) based on a reporter plasmid containing a mutation in the glucocorticoid response element in the long terminal repeat U3 region of bovine leukemia virus.

机构信息

Nano Medical Engineering Laboratory, RIKEN Cluster for Pioneering Research, 2-1 Hirosawa, Wako, Saitama, 3510198, Japan.

Virus Infectious Diseases Unit, RIKEN, 2-1 Hirosawa, Wako, Saitama, 3510198, Japan.

出版信息

Virol J. 2019 May 20;16(1):66. doi: 10.1186/s12985-019-1172-2.

Abstract

BACKGROUND

Bovine leukemia virus (BLV) causes enzootic bovine leukosis, the most common neoplastic disease of cattle. Previously, we reported the luminescence syncytium induction assay (LuSIA), an assay for BLV infectivity based on CC81-BLU3G cells, which form syncytia expressing enhanced green fluorescent protein (EGFP) when co-cultured with BLV-infected cells. To develop a more sensitive LuSIA, we here focused on the glucocorticoid response element (GRE) within the U3 region of the BLV long terminal repeat (LTR).

METHODS

We changed five nucleotide sites of the GRE in a pBLU3-EGFP reporter plasmid containing the BLV-LTR U3 region promoter by site-directed mutagenesis and we then constructed a new reporter plasmid (pBLU3-EGFP) in which the EGFP reporter gene was expressed under control of the GRE-mutated LTR-U3 promoter. We also established a new CC81-derived reporter cell line harboring the GRE-mutated LTR-U3 promoter (CC81-GREMG). To evaluate the sensibility, the utility and the specificity of the LuSIA using CC81-GREMG, we co-cultured CC81-GREMG cells with BLV-persistently infected cells, free-viruses, white blood cells (WBCs) from BLV-infected cows, and bovine immunodeficiency-like virus (BIV)- and bovine foamy virus (BFV)-infected cells.

RESULTS

We successfully constructed a new reporter plasmid harboring a mutation in the GRE and established a new reporter cell line, CC81-GREMG; this line was stably transfected with pBLU3-EGFP in which the EGFP gene is expressed under control of the GRE-mutated LTR-U3 promoter and enabled direct visualization of BLV infectivity. The new LuSIA protocol using CC81-GREMG cells measures cell-to-cell infectivity and cell-free infectivity of BLV more sensitively than previous protocol using CC81-BLU3G. Furthermore, it did not respond to BIV and BFV infections, indicating that the LuSIA based on CC81-GREMG is specific for BLV infectivity. Moreover, we confirmed the utility of a new LuSIA based on CC81-GREMG cells using white blood cells (WBCs) from BLV-infected cows. Finally, the assay was useful for assessing the activity of neutralizing antibodies in plasma collected from BLV-infected cows.

CONCLUSION

The new LuSIA protocol is quantitative and more sensitive than the previous assay based on CC81-BLU3G cells and should facilitate development of several new BLV assays.

摘要

背景

牛白血病病毒(BLV)导致地方性牛白血病,这是牛最常见的肿瘤疾病。此前,我们报道了发光合胞体诱导测定法(LuSIA),这是一种基于 CC81-BLU3G 细胞的 BLV 感染性测定法,当与 BLV 感染的细胞共培养时,该细胞会形成表达增强型绿色荧光蛋白(EGFP)的合胞体。为了开发更灵敏的 LuSIA,我们在此专注于 BLV 长末端重复(LTR)的 U3 区域中的糖皮质激素反应元件(GRE)。

方法

我们通过定点诱变改变了包含 BLV-LTR U3 区域启动子的 pBLU3-EGFP 报告质粒中的五个 GRE 核苷酸位点,然后构建了一个新的报告质粒(pBLU3-EGFP),其中 EGFP 报告基因受 GRE 突变的 LTR-U3 启动子的控制。我们还建立了一个携带 GRE 突变的 LTR-U3 启动子的新 CC81 衍生报告细胞系(CC81-GREMG)。为了评估使用 CC81-GREMG 的 LuSIA 的敏感性、实用性和特异性,我们将 CC81-GREMG 细胞与 BLV 持续性感染的细胞、游离病毒、来自 BLV 感染奶牛的白细胞(WBC)以及牛免疫缺陷样病毒(BIV)和牛泡沫病毒(BFV)感染的细胞进行共培养。

结果

我们成功构建了一个携带 GRE 突变的新报告质粒,并建立了一个新的报告细胞系 CC81-GREMG;该细胞系通过 pBLU3-EGFP 的稳定转染,其中 EGFP 基因受 GRE 突变的 LTR-U3 启动子的控制,并能够直接可视化 BLV 的感染性。使用 CC81-GREMG 细胞的新 LuSIA 方案比以前使用 CC81-BLU3G 的方案更灵敏地测量 BLV 的细胞间感染性和无细胞感染性。此外,它对 BIV 和 BFV 感染没有反应,表明基于 CC81-GREMG 的 LuSIA 特异性针对 BLV 感染性。此外,我们使用来自 BLV 感染奶牛的白细胞(WBC)证实了基于 CC81-GREMG 的新 LuSIA 的实用性。最后,该测定法可用于评估从 BLV 感染奶牛采集的血浆中中和抗体的活性。

结论

新的 LuSIA 方案比以前基于 CC81-BLU3G 细胞的测定法更定量且更灵敏,应有助于开发几种新的 BLV 测定法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa38/6528319/ada4a044381f/12985_2019_1172_Fig1_HTML.jpg

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