首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Avirulence Protein 3a (AVR3a) from the Potato Pathogen Phytophthora infestans Forms Homodimers through Its Predicted Translocation Region and Does Not Specifically Bind Phospholipids
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Avirulence Protein 3a (AVR3a) from the Potato Pathogen Phytophthora infestans Forms Homodimers through Its Predicted Translocation Region and Does Not Specifically Bind Phospholipids

机译:来自马铃薯致病疫霉疫霉的无毒蛋白3a(AVR3a)通过其预测的易位区域形成均态基因并且未特异性结合磷脂

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摘要

The mechanism of translocation of RxLR effectors from plant pathogenic oomycetes into the cytoplasm of their host is currently the object of intense research activity and debate. Here, we report the biochemical and thermodynamic characterization of the Phytophthora infestans effector AVR3a in vitro. We show that the amino acids surrounding the RxLR leader mediate homodimerization of the protein. Dimerization was considerably attenuated by a localized mutation within the RxLR motif that was previously described to prevent translocation of the protein into host. Importantly, we confirm that the reported phospholipid-binding properties of AVR3a are mediated by its C-terminal effector domain, not its RxLR leader. However, we show that the observed phospholipid interaction is attributable to a weak association with denatured protein molecules and is therefore most likely physiologically irrelevant.
机译:RxLR效应子从植物病原性卵菌到其宿主细胞质中的易位机制是当前研究和辩论的对象。在这里,我们报告疫霉菌效应器AVR3a的生化和热力学表征。我们表明,围绕RxLR领导者的氨基酸介导蛋白质的同源二聚化。二聚体被RxLR基序内的局部突变大大减弱,该突变先前已被描述为防止蛋白质易位到宿主中。重要的是,我们证实,AVR3a的磷脂结合特性是由其C末端效应子域而不是其RxLR前导序列介导的。但是,我们表明观察到的磷脂相互作用可归因于与变性蛋白质分子的弱关联,因此最有可能与生理无关。

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