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首页> 外文期刊>Physiological and Molecular Plant Pathology >A novel probe for harpin receptor in nonhost plants: Monoclonal anti-idiotypic antibodies as internal images of Harpin sub(X) sub(o) sub(o) active sites
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A novel probe for harpin receptor in nonhost plants: Monoclonal anti-idiotypic antibodies as internal images of Harpin sub(X) sub(o) sub(o) active sites

机译:非寄主植物中harpin受体的新型探针:单克隆抗独特型抗体作为Harpin sub(X)sub(o)sub(o)活性位点的内部图像

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摘要

Harpins constitute one group of effector proteins which elicit a hypersensitive response in nonhost plants, but the subcellular localization and tissue distribution of harpin receptors are still controversial. Antigen mimicry by anti-idiotypic antibodies is employed as a reliable strategy to probe receptors that are present in very low concentrations in the organism. In this study, a monoclonal anti-idiotypic antibody (Ab2), named 6B2, was elicited by F(ab') sub(2) fragments digested from the purified polyclonal antibody specific for Harpin sub(X) sub(o) sub(o) (Ab1). 6B2 competed with Harpin sub(X) sub(o) sub(o) for binding to Ab1 and the total protein extracted from tobacco leaves indicated its anti-idiotypic character and internal image property. The relevance of antigen mimicry was further confirmed by eliciting a third generation antibody (Ab3), which was shown not only to bind to Ab2 competing with Ab1 but also to react with the original antigen, Harpin sub(X) sub(o) sub(o). Taken together, these results demonstrate functional and biochemical mimicry of Harpin sub(X) sub(o) sub(o) by Ab2 and suggest that 6B2 can be a useful tool in probing its receptor in nonhost plants and other downstream studies.
机译:Harpins构成一组效应蛋白,其在非寄主植物中引起超敏反应,但是harpin受体的亚细胞定位和组织分布仍然是有争议的。通过抗独特型抗体的抗原模拟作为一种可靠的策略来探测在生物体中浓度非常低的受体。在这项研究中,从从对Harpin sub(X)sub(o)sub(o)特异的纯化多克隆抗体中消化的F(ab')sub(2)片段中提取了一种名为6B2的单克隆抗独特型抗体(Ab2)。 )(Ab1)。 6B2与Harpin sub(X)sub(o)sub(o)竞争与Ab1的结合,从烟叶中提取的总蛋白表明其具有抗独特性和内部图像特性。通过引发第三代抗体(Ab3)进一步证实了抗原模拟的相关性,该抗体不仅与竞争与Ab1的Ab2结合,而且还与原始抗原Harpin sub(X)sub(o)sub( o)。综上所述,这些结果证明了Ab2对Harpin sub(X)sub(o)sub(o)的功能和生化模仿,并表明6B2在非宿主植物和其他下游研究中可以作为探测其受体的有用工具。

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