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首页> 外文期刊>Applied Microbiology and Biotechnology >Characterization and application of a common epitope recognized by a broad-spectrum C4 monoclonal antibody against capsid proteins of plant potyviruses
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Characterization and application of a common epitope recognized by a broad-spectrum C4 monoclonal antibody against capsid proteins of plant potyviruses

机译:广谱C4单克隆抗体识别植物马铃薯病毒衣壳蛋白的通用表位的表征和应用

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A broad-spectrum monoclonal antibody (C4 MAb) against the capsid proteins (CPs) of plant potyviruses has been generated in previous studies. To clarify which epitope is recognized by this MAb, epitope mapping was performed via phage display library screening and amino acid substitution analysis. Subsequently, a 12-residue epitope in the core region of potyvirus CPs was identified and termed the C4 epitope (WxMMDGxxQxxY/F). This epitope contains tryptophan and tyrosine residues that are crucial for reacting with C4 MAb. The CP of Odontoglossum ringspot tobamovirus (ORSV) separately fused with the C4 epitope of Konjak mosaic potyvirus (KoMV), Zantedeschia mild mosaic potyvirus (ZaMMV), or Dasheen mosaic potyvirus (DsMV) was expressed in a bacterial system and purified. The results of indirect ELISA and Western blotting demonstrated that the C4 epitope of KoMV (Ko) fused to ORSV CP showed the strongest binding affinity to C4 MAb among the three viral epitope tags examined. The binding affinity between Ko tag (WTMMDGEEQIEY) and C4 MAb was determined. To examine the applicability of the Ko tag in planta, GFP and ORSV CP were transiently expressed in Nicotiana benthamiana, and both Ko-tagged proteins were specifically detected using C4 MAb. The Ko tag did not affect the silencing suppressor function of Tomato bushy stunt tombusvirus P19 in N. benthamiana. Furthermore, Ko-tagged EGFP could be successfully expressed, specifically detected and subsequently immunoprecipitated using C4 MAb in a mammalian cell system. Thus, the present study identified a common C4 epitope of potyviruses recognized by the broad-spectrum C4 and PTY 1 MAbs, and the results indicated that the newly designed Ko tag is suitable for application in bacterial, plant, and mammalian cell systems.
机译:在先前的研究中已经产生了针对植物马铃薯病毒的衣壳蛋白(CP)的广谱单克隆抗体(C4 MAb)。为了阐明该MAb识别哪些表位,通过噬菌体展示文库筛选和氨基酸取代分析进行了表位作图。随后,鉴定了在杯状病毒CPs核心区域中有12个残基的表位,并将其称为C4表位(WxMMDGxxQxxY / F)。该表位包含色氨酸和酪氨酸残基,这些残基对于与C4 MAb反应至关重要。在细菌系统中表达和纯化了分别与魔芋花叶病毒(KoMV),马蹄铁淡水花叶病毒(ZaMMV)或大兴花叶病毒(DsMV)的C4表位融合的齿形齿环杯状烟草病毒(ORSV)的CP。间接ELISA和Western印迹的结果表明,与ORSV CP融合的KoMV(Ko)的C4表位在所检测的三个病毒表位标签中显示出对C4 MAb的最强结合亲和力。确定了Ko标签(WTMMDGEEQIEY)和C4MAb之间的结合亲和力。为了检查Ko标签在植物中的适用性,在本氏烟草中瞬时表达了GFP和ORSV CP,并使用C4 MAb专门检测了这两个带有Ko标签的蛋白。 Ko标签不影响本氏烟草中的番茄浓密的特技tombusvirus P19的沉默抑制功能。此外,在哺乳动物细胞系统中,可以使用C4 MAb成功表达,特异性检测Ko-标记的EGFP,然后进行免疫沉淀。因此,本研究确定了广谱C4和PTY 1 MAb识别的常见的杯状病毒C4表位,结果表明,新设计的Ko标签适用于细菌,植物和哺乳动物细胞系统。

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