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Structural Analysis of Pseudomonas syringae AvrPtoB Bound to Host BAK1 Reveals Two Similar Kinase-Interacting Domains in a Type III Effector

机译:绑定到宿主BAK1的丁香假单胞菌AvrPtoB的结构分析揭示了III型效应子中的两个相似的激酶相互作用域。

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摘要

To infect plants, Pseudomonas syringae pv. tomato delivers similar to 30 type III effector proteins into host cells, many of which interfere with PAM P-triggered immunity (PTI). One effector, AvrPtoB, suppresses PTI using a central domain to bind host BAK1, a kinase that acts with several pattern recognition receptors to activate defense signaling. A second AvrPtoB domain binds and suppresses the PTI-associated kinase Bti9 but is conversely recognized by the protein kinase Pto to activate effector-triggered immunity. We report the crystal structure of the AvrPtoB-BAK1 complex, which revealed structural similarity between these two AvrPtoB domains, suggesting that they arose by intragenic duplication. The BAK1 kinase domain is structurally similar to Pto, and a conserved region within both BAK1 and Pto interacts with AvrPtoB. BAK1 kinase activity is inhibited by AvrPtoB, and mutations at the interaction interface disrupt AvrPtoB virulence activity. These results shed light on a structural mechanism underlying host-pathogen coevolution.
机译:为了感染植物,丁香假单胞菌PV。番茄将类似30种III型效应蛋白送入宿主细胞,其中许多干扰PAM P触发的免疫(PTI)。一种效应器AvrPtoB使用中央结构域结合宿主BAK1抑制PTI,该宿主BAK1与几种模式识别受体共同激活防御信号传导。第二个AvrPtoB结构域结合并抑制PTI相关激酶Bti9,但相反地被蛋白激酶Pto识别以激活效应子触发的免疫力。我们报告了AvrPtoB-BAK1复杂的晶体结构,揭示了这两个AvrPtoB域之间的结构相似性,表明它们是通过基因内复制而产生的。 BAK1激酶结构域在结构上与Pto相似,并且BAK1和Pto内的保守区均与AvrPtoB相互作用。 BAK1激酶活性受到AvrPtoB的抑制,相互作用界面处的突变破坏了AvrPtoB的毒力活性。这些结果揭示了宿主-病原体协同进化的基础机制。

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