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Ax21 的分泌、修饰和调节。

Secretion, modification, and regulation of Ax21.

机构信息

Department of Plant Pathology, University of California, One Shields Ave., Davis, CA 95616, USA.

出版信息

Curr Opin Microbiol. 2011 Feb;14(1):62-7. doi: 10.1016/j.mib.2010.12.006. Epub 2011 Jan 12.

Abstract

Innate immunity provides a first line of defense against pathogen attack and is activated rapidly following infection. Although it is now widely appreciated that host receptors of conserved microbial signatures play a key role in innate immunity in plants and animals, very little is known about the biological function of the microbially derived molecules recognized by such receptors. We have recently demonstrated that the rice XA21 receptor binds the AxY(S)22 peptide corresponding to the N-terminal region of Ax21, a type I-secreted protein that is highly conserved in all Xanthomonas species as well as in Xylella fastidiosa and the human pathogen, Stenotrophomonas maltophilia. We hypothesize that post-translational modification of Ax21 is carried out by the RaxP, RaxQ, and RaxST proteins and that perception and regulation of Ax21 is controlled by the RaxR/H and PhoP/Q 2-component regulatory systems. Ax21 is predicted to serve as an inducer of quorum sensing (QS), a process where bacteria communicate with one another. Because this is the first example of a conserved microbial signature that binds a host receptor and is also predicted to serve as an inducer of QS, this work has revealed fundamental new principles governing host-microbe interactions and has provided insight into the signaling dynamics of microbial communities.

摘要

先天免疫为抵抗病原体攻击提供了第一道防线,并在感染后迅速激活。尽管现在人们普遍认识到,保守的微生物特征的宿主受体在植物和动物的先天免疫中起着关键作用,但对于此类受体识别的微生物衍生分子的生物学功能知之甚少。我们最近证明,水稻 XA21 受体结合了 AxY(S)22 肽,该肽对应于 Ax21 的 N 端区域,Ax21 是一种 I 型分泌蛋白,在所有黄单胞菌属物种以及 Xylella fastidiosa 和人类病原体 Stenotrophomonas maltophilia 中高度保守。我们假设 Ax21 的翻译后修饰由 RaxP、RaxQ 和 RaxST 蛋白完成,而 Ax21 的感知和调节由 RaxR/H 和 PhoP/Q 二组分调节系统控制。Ax21 被预测为群体感应 (QS) 的诱导剂,QS 是细菌之间相互交流的过程。因为这是第一个结合宿主受体并被预测为 QS 诱导剂的保守微生物特征的例子,这项工作揭示了控制宿主-微生物相互作用的基本新原则,并深入了解了微生物群落的信号动态。

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