首页> 美国卫生研究院文献>Plant Physiology >The RNA Hydrolysis and the Cytokinin Binding Activities of PR-10 Proteins Are Differently Performed by Two Isoforms of the Pru p 1 Peach Major Allergen and Are Possibly Functionally Related
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The RNA Hydrolysis and the Cytokinin Binding Activities of PR-10 Proteins Are Differently Performed by Two Isoforms of the Pru p 1 Peach Major Allergen and Are Possibly Functionally Related

机译:PR-10蛋白的RNA水解和细胞分裂素结合活性由Pru p 1桃子主要变应原的两种同工型不同地执行并且可能与功能相关

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摘要

PR-10 proteins are a family of pathogenesis-related (PR) allergenic proteins playing multifunctional roles. The peach (Prunus persica) major allergen, Pru p 1.01, and its isoform, Pru p 1.06D, were found highly expressed in the fruit skin at the pit hardening stage, when fruits transiently lose their susceptibility to the fungal pathogen Monilinia spp. To investigate the possible role of the two Pru p 1 isoforms in plant defense, the recombinant proteins were expressed in Escherichia coli and purified. Light scattering experiments and circular dichroism spectroscopy showed that both proteins are monomers in solution with secondary structures typical of PR-10 proteins. Even though the proteins do not display direct antimicrobial activity, they both act as RNases, a function possibly related to defense. The RNase activity is different for the two proteins, and only that of Pru p 1.01 is affected in the presence of the cytokinin zeatin, suggesting a physiological correlation between Pru p 1.01 ligand binding and enzymatic activity. The binding of zeatin to Pru p 1.01 was evaluated using isothermal titration calorimetry, which provided information on the stoichiometry and on the thermodynamic parameters of the interaction. The structural architecture of Pru p 1.01 and Pru p 1.06D was obtained by homology modeling, and the differences in the binding pockets, possibly accounting for the observed difference in binding activity, were evaluated.
机译:PR-10蛋白是一类与发病相关的(PR)变应原蛋白,具有多种功能。桃(Prunus persica)主要变应原Pru p 1.01及其同工型Pru p 1.06D在果核硬化阶段在果皮中高表达,这是因为果实暂时失去对真菌病原菌莫里利尼亚菌的敏感性。为了研究两种Pru p 1同工型在植物防御中的可能作用,将重组蛋白在大肠杆菌中表达并纯化。光散射实验和圆二色光谱表明,这两种蛋白质都是溶液中的单体,具有PR-10蛋白的典型二级结构。即使蛋白质不显示直接的抗微生物活性,它们都充当RNases,这可能与防御有关。两种蛋白的RNase活性是不同的,只有在细胞分裂素玉米蛋白存在的情况下,Pru p 1.01的RNA酶活性才会受到影响,这表明Pru p 1.01配体结合与酶促活性之间存在生理相关性。使用等温滴定量热法评估了玉米蛋白与Pru p 1.01的结合,该方法提供了有关化学计量和相互作用的热力学参数的信息。通过同源性建模获得Pru p 1.01和Pru p 1.06D的结构体系,并评估结合口袋中的差异,这可能解释了观察到的结合活性差异。

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