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Chemically Synthesized 58-mer LysM Domain Binds Lipochitin Oligosaccharide

机译:化学合成的58-mer LysM结构域与脂蛋白寡糖结合

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Recognition of carbohydrates by proteins is a ubiquitous biochemical process. In legume-rhizobium symbiosis, lipochitin oligosaccharides, also referred to as nodulation (nod) factors, function as primary rhizobial signal molecules to trigger root nodule development. Perception of these signal molecules is receptor mediated, and nod factor receptor 5 (NFR5) from the model legume Lotus japonicus is predicted to contain three LysM domain binding sites. Here we studied the interactions between nod factor and each of the three NFR5 LysM domains, which were chemically synthesized. LysM domain variants (up to 58 amino acids) designed to optimize solubility were chemically assembled by solid-phase peptide synthesis (SPPS) with microwave heating. Their interaction with nod factors and chitin oligosaccharides was studied by isothermal titration calorimetry and circular dichroism (CD) spectroscopy. LysM2 showed a change in folding upon nod factor binding, thus providing direct evidence that the LysM domain of NFR5 recognizes lipochitin oligosaccharides. These results clearly show that the L. japonicus LysM2 domain binds to the nod factor from Mesorhizobium loti, thereby causing a conformational change in the LysM2 domain. The preferential affinity for nod factors over chitin oligosaccharides was demonstrated by a newly developed glycan microarray. Besides the biological implications, our approach shows that carbohydrate binding to a small protein domain can be detected by CD spectroscopy.
机译:通过蛋白质识别碳水化合物是普遍存在的生化过程。在豆科植物-根瘤菌共生中,脂壳素寡糖(也称为结瘤(结节)因子)起着根瘤菌信号分子的作用,触发根瘤的形成。这些信号分子的感知是受体介导的,并且模型豆科植物日本j中的nod因子受体5(NFR5)预计包含三个LysM结构域结合位点。在这里,我们研究了点头因子与化学合成的三个NFR5 LysM结构域之间的相互作用。通过固相肽合成(SPPS)和微波加热化学组装了旨在优化溶解度的LysM结构域变体(最多58个氨基酸)。通过等温滴定热法和圆二色性(CD)光谱研究了它们与Nod因子和几丁质寡糖的相互作用。 LysM2在结点因子结合后显示折叠变化,因此提供了直接证据证明NFR5的LysM结构域可识别脂壳素寡糖。这些结果清楚地表明,日本血吸虫的LysM2结构域与中型根瘤菌的结节因子结合,从而引起LysM2结构域的构象变化。新开发的聚糖微阵列证明了对点头因子的优先亲和力优于几丁质寡糖。除了生物学意义外,我们的方法还显示可以通过CD光谱法检测与小蛋白结构域结合的碳水化合物。

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