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Bioinformatics Analysis Reveals Abundant Short Alpha-Helices as a Common Structural Feature of Oomycete RxLR Effector Proteins

机译:生物信息学分析揭示了丰富的短α-螺旋作为卵菌RxLR效应蛋白的常见结构特征。

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摘要

RxLR effectors represent one of the largest and most diverse effector families in oomycete plant pathogens. These effectors have attracted enormous attention since they can be delivered inside the plant cell and manipulates host immunity. With the exceptions of a signal peptide and the following RxLR-dEER and C-terminal W/Y/L motifs identified from the sequences themselves, nearly no functional domains have been found. Recently, protein structures of several RxLRs were revealed to comprise alpha-helical bundle repeats. However, approximately half of all RxLRs lack obvious W/Y/L motifs, which are associated with helical structures. In this study, secondary structure prediction of the putative RxLR proteins was performed. We found that the C-terminus of the majority of these RxLR proteins, irrespective of the presence of W/Y/L motifs, contains abundant short alpha-helices. Since a large-scale experimental determination of protein structures has been difficult to date, results of the current study extend our understanding on the oomycete RxLR effectors in protein secondary structures from individual members to the entire family. Moreover, we identified less alpha-helix-rich proteins from secretomes of several oomycete and fungal organisms in which RxLRs have not been identified, providing additional evidence that these organisms are unlikely to harbor RxLR-like proteins. Therefore, these results provide additional information that will aid further studies on the evolution and functional mechanisms of RxLR effectors.
机译:RxLR效应子代表卵菌植物病原体中最大和最多样化的效应子家族之一。这些效应子已经可以在植物细胞内传递并操纵宿主免疫力,因此引起了极大的关注。除了信号肽和从序列本身鉴定出的以下RxLR-dEER和C端W / Y / L基序外,几乎没有发现功能性结构域。最近,一些RxLRs的蛋白质结构被发现包含α-螺旋束重复。但是,所有RxLR中大约有一半缺少明显的W / Y / L图案,这些图案与螺旋结构有关。在这项研究中,进行了推定的RxLR蛋白的二级结构预测。我们发现这些RxLR蛋白质的大多数C末端,无论W / Y / L母题的存在,包含丰富的短α螺旋。由于迄今为止尚难以大规模地测定蛋白质结构,因此本研究的结果将我们对蛋白质二级结构中卵菌RxLR效应子的理解从单个成员扩展到整个家族。此外,我们从尚未鉴定出RxLR的几种卵菌和真菌生物的分泌物中鉴定出了较少的富含α-螺旋的蛋白质,从而提供了更多证据表明这些生物不太可能携带RxLR样蛋白质。因此,这些结果提供了额外的信息,将有助于进一步研究RxLR效应子的进化和功能机制。

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  • 总页数 13
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