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The RxLR Motif of the Host Targeting Effector AVR3a of Phytophthora infestans Is Cleaved before Secretion

机译:在分泌之前,植物靶向疗效诱导术AVR3A的宿主靶向疗效AVR3A的RXLR基序

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摘要

When plant-pathogenic oomycetes infect their hosts, they employ a large arsenal of effector proteins to establish a successful infection. Some effector proteins are secreted and are destined to be translocated and function inside host cells. The largest group of translocated proteins from oomycetes is the RxLR effectors, defined by their conserved N-terminal Arg-Xaa-Leu-Arg (RxLR) motif. However, the precise role of this motif in the host cell translocation process is unclear. Here, detailed biochemical studies of the RxLR effector AVR3a from the potato pathogen Phytophthora infestans are presented. Mass spectrometric analysis revealed that the RxLR sequence of native AVR3a is cleaved off prior to secretion by the pathogen and the N terminus of the mature effector was found likely to be acetylated. High-resolution NMR structure analysis of AVR3a indicates that the RxLR motif is well accessible to potential processing enzymes. Processing and modification of AVR3a is to some extent similar to events occurring with the export element (PEXEL) found in malaria effector proteins from Plasmodium falciparum. These findings imply a role for the RxLR motif in the secretion of AVR3a by the pathogen, rather than a direct role in the host cell entry process itself.
机译:当植物致病的oomycetes感染他们的宿主时,它们采用大型效应蛋白的大炮,以建立成功的感染。一些效应蛋白质被分泌并注定在宿主细胞内部旋转和功能。来自Oomycetes的最大型膨胀蛋白是RXLR效应器,由其保守的N末端Arg-XAA-Leu-Arg(RXLR)图案定义。然而,该基序在宿主细胞易位过程中的精确作用尚不清楚。这里,提出了来自马铃薯病原体植物嗜含量的RXLR效应AVR3A的详细生化研究。质谱分析显示,在分泌物通过病原体之前裂开天然AVR3a的RxLR序列,并且发现成熟效应器的N末端可能是乙酰化的。 AVR3A的高分辨率NMR结构分析表明RXLR基序可用于潜在的加工酶。 AVR3A的加工和修饰在一定程度上类似于来自来自疟原虫蛋白质蛋白质中的出口元素(Pexel)发生的事件。这些发现意味着RXLR基序在病原体中的AVR3A分泌中的作用,而不是在宿主细胞进入过程本身中的直接作用。

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    《The Plant Cell》 |2017年第6期|共12页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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