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铜绿假单胞菌效应蛋白AvrPtoB与番茄Pto激酶复合物的晶体结构揭示了与AvrPto-Pto相比既有共享界面又有独特界面。

Crystal structure of the complex between Pseudomonas effector AvrPtoB and the tomato Pto kinase reveals both a shared and a unique interface compared with AvrPto-Pto.

作者信息

Dong Jing, Xiao Fangming, Fan Fenxia, Gu Lichuan, Cang Huaixing, Martin Gregory B, Chai Jijie

机构信息

Institute of Biophysics, Chinese Academy of Sciences, Beijing 100875, China.

出版信息

Plant Cell. 2009 Jun;21(6):1846-59. doi: 10.1105/tpc.109.066878. Epub 2009 Jun 9.

Abstract

Resistance to bacterial speck disease in tomato (Solanum lycopersicum) is activated upon recognition by the host Pto kinase of either one of two sequence-unrelated effector proteins, AvrPto or AvrPtoB, from Pseudomonas syringae pv tomato (Pst). Pto induces Pst immunity by acting in concert with the Prf protein. The recently reported structure of the AvrPto-Pto complex revealed that interaction of AvrPto with Pto appears to relieve an inhibitory effect of Pto, allowing Pto to activate Prf. Here, we present the crystal structure of the Pto binding domain of AvrPtoB (residues 121 to 205) at a resolution of 1.9A and of the AvrPtoB(121-205)-Pto complex at a resolution of 3.3 A. AvrPtoB(121-205) exhibits a tertiary fold that is completely different from that of AvrPto, and its conformation remains largely unchanged upon binding to Pto. In common with AvrPto-Pto, the AvrPtoB-Pto complex relies on two interfaces. One of these interfaces is similar in both complexes, although the primary amino acid sequences from the two effector proteins are very different. Amino acid substitutions in Pto at the other interface disrupt the interaction of AvrPtoB-Pto but not that of AvrPto-Pto. Interestingly, substitutions in Pto affecting this unique interface also cause Pto to induce Prf-dependent host cell death independently of either effector protein.

摘要

番茄(Solanum lycopersicum)对细菌性斑点病的抗性在宿主Pto激酶识别来自丁香假单胞菌番茄致病变种(Pst)的两种序列不相关的效应蛋白之一AvrPto或AvrPtoB时被激活。Pto通过与Prf蛋白协同作用诱导对Pst的免疫。最近报道的AvrPto - Pto复合物的结构表明,AvrPto与Pto的相互作用似乎解除了Pto的抑制作用,使Pto能够激活Prf。在此,我们展示了AvrPtoB的Pto结合结构域(第121至205位氨基酸)分辨率为1.9埃的晶体结构以及AvrPtoB(121 - 205) - Pto复合物分辨率为3.3埃的晶体结构。AvrPtoB(121 - 205)呈现出与AvrPto完全不同的三级结构,并且其构象在与Pto结合后基本保持不变。与AvrPto - Pto一样,AvrPtoB - Pto复合物依赖于两个界面。其中一个界面在两个复合物中相似,尽管来自两种效应蛋白的主要氨基酸序列非常不同。Pto在另一个界面的氨基酸替换破坏了AvrPtoB - Pto的相互作用,但不影响AvrPto - Pto的相互作用。有趣的是,Pto中影响这个独特界面的替换也导致Pto在不依赖任何一种效应蛋白的情况下诱导Prf依赖的宿主细胞死亡。

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