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MAMP-triggered plant immunity mediated by the LysM-receptor kinase CERK1

机译:由Lysm-actover激酶Cerk1介导的混搭植物免疫

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摘要

Lysin motif (LysM) receptor-like proteins/kinases (LysM-RLPs/RLKs) are well known to play an important role in the induction of defense or symbiosis signaling through the recognition of carbohydrate ligands in plants. Chitin elicitor receptor kinase 1 (CERK1) is the receptor-like kinase (RLK) essential for chitin-induced defense signaling in Arabidopsis and rice. At/OsCERK1 is also known to be important for peptidoglycan (PGN)-induced defense signaling. To induce chitin and PGN responses, CERK1 forms a receptor complex with corresponding LysM-type receptors such as CEBiP, LYM1/3 or LYP4/6. Furthermore, OsCERK1 in rice also plays a key role in lipopolysaccharide (LPS) signaling, and AtCERK1 in Arabidopsis is involved in unbranched -glucan signaling. In any case, CERK1 plays a crucial role in the activation of defense signaling by these ligands and is an essential hub-RLK/co-receptor in these systems. After chitin perception, autophosphorylation of the CERK1 kinase domain is essential for inducing immune signaling, and some functionally important phosphorylation sites have been identified. In addition, several CERK1-interacting proteins and their contribution to the downstream signaling have been reported. In particular, phosphorylation of receptor-like cytoplasmic kinases (RLCKs) by CERK1 is important for the activation of chitin signaling. These findings have contributed to our understanding of the early steps of chitin signaling. This review focuses on current knowledge about CERK1-mediated receptor complex formation and subsequent intracellular signaling.
机译:众所周知,Lysin基序(Lysm)类受体样蛋白/激酶(Lysm-RLP / RLK)在植物中识别碳水化合物配体识别碳水化合物配体诱导防御或共生信号传导中起重要作用。几丁质Elicitor受体激酶1(CERK1)是拟南芥和水稻中甲壳素诱导的防御信号传导的受体样激酶(RLK)。 AT / oscerk1也已知对肽聚糖(PGN)诱导的防御信号传导至关重要。为了诱导几丁质和PGN反应,Cerk1形成具有相应型型型受体的受体络合物,例如CeBip,Lym1 / 3或Lyp4 / 6。此外,水稻中的osmerk1也在脂多糖(LPS)信号中起关键作用,拟南芥中的Atcerk1参与了非支链葡聚糖信号传导。在任何情况下,Cerk1在这些配体的防御信号激活中起着至关重要的作用,并且是这些系统中的必需枢纽/共同受体。在几丁质感知后,Cerk1激酶结构域的自磷酸化对于诱导免疫信号传导至关重要,并且已经鉴定了一些功能重要的磷酸化位点。另外,已经报道了几种交互蛋白质及其对下游信号传导的贡献。特别地,CERK1的受体样细胞质激酶(RLCK)的磷酸化对于甲壳素信号传导的活化是重要的。这些发现有助于我们对几丁质信号传导的早期步骤的理解。本综述侧重于目前关于Cerk1介导的受体复合物形成和随后的细胞内信号传导的知识。

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