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用于亚型特异性血清诊断检测的体内生物素化重组流感 A 病毒血凝素。

In vivo biotinylated recombinant influenza A virus hemagglutinin for use in subtype-specific serodiagnostic assays.

机构信息

National Reference Laboratory for Avian Influenza Virus, Friedrich-Loeffler-Institute, Federal Research Institute for Animal Health, D-17493 Greifswald, Germany.

出版信息

Anal Biochem. 2011 Apr 1;411(1):22-31. doi: 10.1016/j.ab.2010.12.022. Epub 2010 Dec 21.

Abstract

There is an urgent need for robust subtype-specific serological tests to diagnose influenza A virus infections in poultry and mammals, including humans. Such assays require reliable subtype-specific sources of soluble and authentically folded seroreactive hemagglutinin (HA), one of the integral membrane proteins that determine the serological subtype of influenza viruses. To this purpose, a bigenic pFastBacDual baculovirus transfer vector allowing efficient invivo biotinylation of soluble HA homo-oligomers expressed via the secretory pathway was developed. An Avi-Tag allowed site-specific biotinylation by a coexpressed genetically modified BirA biotin ligase retained in the endoplasmic reticulum (ER). Highly seroreactive mono-biotinylated HA of recent H5 and H7 influenza A subtypes was secreted from recombinant baculovirus infected High-Five insect cells at levels sufficient to directly load streptavidin-coated enzyme-linked immunosorbent assay (ELISA) matrices, thereby avoiding any purification steps. The recombinant antigens retained authentic antigenicity, including conformation-dependent epitopes involved in hemagglutination inhibition as detected by monoclonal antibodies. This is the first bigenic invivo biotinylation system established for use in insect cells with secretable recombinant membrane proteins biotinylated by an ER-retained variant of BirA biotin ligase. The proposed technique is expected to significantly increase flexibility in the design of subtype-specific assays, thereby expanding the power of influenzaA virus serodiagnosis.

摘要

迫切需要针对流感 A 病毒感染的家禽和哺乳动物(包括人类)的稳健的亚型特异性血清学检测方法。此类检测需要可靠的、亚型特异性的可溶性和折叠正确的血清反应性血凝素(HA)来源,HA 是决定流感病毒血清亚型的完整膜蛋白之一。为此,开发了一种双基因 pFastBacDual 杆状病毒转移载体,该载体可通过分泌途径有效对可溶性 HA 同源寡聚体进行体内生物素化。AviTag 允许通过共表达的、在 ER 中保留的遗传修饰的 BirA 生物素连接酶进行定点生物素化。最近的 H5 和 H7 流感 A 亚型的高度血清反应性单生物素化 HA 从重组杆状病毒感染的 High-Five 昆虫细胞中以足够的水平分泌出来,可直接加载链霉亲和素包被的酶联免疫吸附测定(ELISA)基质,从而避免任何纯化步骤。重组抗原保留了真实的抗原性,包括通过单克隆抗体检测到的血凝抑制相关的构象依赖性表位。这是第一个为可分泌重组膜蛋白的昆虫细胞建立的双基因体内生物素化系统,该蛋白由 ER 中保留的 BirA 生物素连接酶变体生物素化。预期该技术将极大地提高针对特定亚型的检测方法的设计灵活性,从而增强流感 A 病毒血清学诊断的能力。

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