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Direct Binding of a Plant LysM Receptor-like Kinase, LysM RLK1/CERK1, to Chitin in Vitro*

机译:植物LysM受体样激酶LysM RLK1 / CERK1直接与几丁质体外结合*

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摘要

Plants induce immune responses against fungal pathogens by recognition of chitin, which is a component of the fungal cell wall. Recent studies have revealed that LysM receptor-like kinase 1/chitin elicitor receptor kinase 1 (LysM RLK1/CERK1) is a critical component for the immune responses to chitin in Arabidopsis thaliana. However, the molecular mechanism of the chitin recognition by LysM RLK1 still remains unknown. Here, we present the first evidence for direct binding of LysM RLK1 to chitin. We expressed LysM RLK1 fused with yeast-enhanced green fluorescent protein (LysM RLK1-yEGFP) in yeast cells. Binding studies using the solubilized LysM RLK1-yEGFP and several insoluble polysaccharides having similar structures showed that LysM RLK1-yEGFP specifically binds to chitin. Subsequently, the fluorescence microscopic observation of the solubilized LysM RLK1-yEGFP binding to chitin beads revealed that the binding was saturable and had a high affinity, with a Kd of ∼82 nm. This binding was competed by the addition of soluble glycol chitin or high concentration of chitin oligosaccharides having 4–8 residues of N-acetyl glucosamine. However, the competition of these chitin oligosaccharides is weaker than that of glycol chitin. These data suggest that LysM RLK1 has a higher affinity for chitin having a longer residue of N-acetyl glucosamine. We also found that LysM RLK1-yEGFP was autophosphorylated in vitro and that chitin does not affect the phosphorylation of LysM RLK1-yEGFP. Our results provide a new dimension to chitin elicitor perception in plants.
机译:植物通过识别几丁质来诱导针对真菌病原体的免疫反应,几丁质是真菌细胞壁的组成部分。最近的研究表明,LysM受体样激酶1 /几丁质激发子受体激酶1(LysM RLK1 / CERK1)是拟南芥对几丁质免疫反应的关键组成部分。然而,LysM RLK1识别几丁质的分子机制仍然未知。在这里,我们提出LysM RLK1与几丁质直接结合的第一个证据。我们在酵母细胞中表达了与酵母增强的绿色荧光蛋白(LysM RLK1-yEGFP)融合的LysM RLK1。使用增溶的LysM RLK1-yEGFP和几种具有相似结构的不溶性多糖的结合研究表明,LysM RLK1-yEGFP可特异性结合几丁质。随后,对溶解的LysM RLK1-yEGFP与几丁质珠的结合进行荧光显微镜观察,发现该结合是可饱和的并且具有高亲和力,Kd约为82 nm。通过添加可溶性乙二醇几丁质或高浓度的具有4-8个N-乙酰氨基葡萄糖残基的几丁质寡糖来竞争这种结合。但是,这些几丁质寡糖的竞争性弱于乙二醇几丁质。这些数据表明,LysM RLK1对具有更长残基的N-乙酰氨基葡萄糖的几丁质具有更高的亲和力。我们还发现LysM RLK1-yEGFP在体外被自身磷酸化,几丁质不影响LysM RLK1-yEGFP的磷酸化。我们的结果为植物中几丁质激发子的感知提供了新的维度。

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