Probing the Arabidopsis Flagellin Receptor: FLS2-FLS2 Association and the Contributions of Specific Domains to Signaling Function

被引:78
作者
Sun, Wenxian [1 ,2 ]
Cao, Yangrong [1 ]
Labby, Kristin Jansen [1 ]
Bittel, Pascal [3 ]
Boller, Thomas [3 ]
Bent, Andrew F. [1 ]
机构
[1] Univ Wisconsin, Dept Plant Pathol, Madison, WI 53706 USA
[2] China Agr Univ, Dept Plant Pathol, Beijing 100193, Peoples R China
[3] Univ Basel, Botan Inst, CH-4056 Basel, Switzerland
基金
瑞士国家科学基金会; 中国国家自然科学基金;
关键词
PSEUDOMONAS-SYRINGAE EFFECTOR; PATTERN-RECOGNITION RECEPTORS; AGROBACTERIUM-MEDIATED TRANSFORMATION; BACTERIAL ELICITOR FLAGELLIN; PLANT INNATE IMMUNITY; TOLL-LIKE RECEPTOR-3; RICH REPEAT DOMAIN; ENDOPLASMIC-RETICULUM; STRUCTURAL BASIS; QUALITY-CONTROL;
D O I
10.1105/tpc.112.095919
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
FLAGELLIN SENSING2 (FLS2) is a transmembrane receptor kinase that activates antimicrobial defense responses upon binding of bacterial flagellin or the flagellin-derived peptide flg22. We find that some Arabidopsis thaliana FLS2 is present in FLS2-FLS2 complexes before and after plant exposure to flg22. flg22 binding capability is not required for FLS2-FLS2 association. Cys pairs flank the extracellular leucine rich repeat (LRR) domain in FLS2 and many other LRR receptors, and we find that the Cys pair N-terminal to the FLS2 LRR is required for normal processing, stability, and function, possibly due to undescribed endoplasmic reticulum quality control mechanisms. By contrast, disruption of the membrane-proximal Cys pair does not block FLS2 function, instead increasing responsiveness to flg22, as indicated by a stronger oxidative burst. There was no evidence for intermolecular FLS2-FLS2 disulfide bridges. Truncated FLS2 containing only the intracellular domain associates with full-length FLS2 and exerts a dominant-negative effect on wild-type FLS2 function that is dependent on expression level but independent of the protein kinase capacity of the truncated protein. FLS2 is insensitive to disruption of multiple N-glycosylation sites, in contrast with the related receptor EF-Tu RECEPTOR that can be rendered nonfunctional by disruption of single glycosylation sites. These and additional findings more precisely define the molecular mechanisms of FLS2 receptor function.
引用
收藏
页码:1096 / 1113
页数:18
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