Department of Plant Pathology, University of Wisconsin, Madison, Wisconsin 53706, USA.
Plant Cell. 2012 Mar;24(3):1096-113. doi: 10.1105/tpc.112.095919. Epub 2012 Mar 2.
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.
鞭毛蛋白感应 2(FLS2)是一种跨膜受体激酶,在结合细菌鞭毛蛋白或鞭毛蛋白衍生肽 flg22 后,激活抗菌防御反应。我们发现,一些拟南芥 FLS2 在植物暴露于 flg22 前后存在于 FLS2-FLS2 复合物中。FLS2-FLS2 缔合不需要 flg22 结合能力。半胱氨酸对位于 FLS2 和许多其他 LRR 受体的细胞外富含亮氨酸重复(LRR)结构域的侧翼,我们发现 FLS2 LRR 之前的 N 端半胱氨酸对正常加工、稳定性和功能是必需的,可能是由于未描述的内质网质量控制机制。相比之下,破坏膜近端半胱氨酸对不对阻止 FLS2 功能,而是增加对 flg22 的反应性,如更强的氧化爆发所表明的那样。没有证据表明存在分子间 FLS2-FLS2 二硫键。仅包含细胞内结构域的截断 FLS2 与全长 FLS2 结合,并对野生型 FLS2 功能产生显性负效应,该效应依赖于表达水平,但独立于截断蛋白的蛋白激酶能力。FLS2 对多个 N-糖基化位点的破坏不敏感,与相关受体 EF-Tu 受体形成对比,EF-Tu 受体的单个糖基化位点的破坏可使其失去功能。这些和其他发现更精确地定义了 FLS2 受体功能的分子机制。