Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa, Nagoya, 464-8602, Japan.
National Institute for Basic Biology, Myodaiji, Okazaki, 444-8585, Japan.
Commun Biol. 2019 Feb 15;2:61. doi: 10.1038/s42003-019-0307-8. eCollection 2019.
Intercellular signaling mediated by peptide hormones and membrane-localized receptor kinases plays crucial roles in plant developmental processes. Because of their diverse functions, agonistic or antagonistic modulation of peptide signaling holds enormous promise for agricultural applications. Here we established a high-throughput screening system using a bead-immobilized receptor kinase and fluorescent-labeled peptide ligand to identify small molecules that bind peptide hormone receptors in competition with natural ligands. We used the CLE9-BAM1 ligand-receptor pair to screen a library of ≈30,000 chemicals and identified NPD12704 as an antagonist for BAM1. NPD12704 also inhibited CLV3 binding to BAM1 but only minimally interfered with CLV3 binding to CLV1, the closest homolog of BAM1, demonstrating preferential receptor specificity. Treatment of mutant seedlings with NPD12704 enhanced the enlarged shoot apical meristem phenotype. Our results provide a technological framework enabling high-throughput identification of small non-peptide chemicals that specifically control receptor kinase-mediated peptide hormone signaling in plants.
肽激素和膜定位受体激酶介导的细胞间信号在植物发育过程中起着至关重要的作用。由于其功能多样,对肽信号的激动或拮抗调节在农业应用中具有巨大的潜力。在这里,我们使用珠固定化受体激酶和荧光标记肽配体建立了一种高通量筛选系统,以鉴定与天然配体竞争结合肽激素受体的小分子。我们使用 CLE9-BAM1 配体-受体对筛选了约 30000 种化学物质,并鉴定出 NPD12704 是 BAM1 的拮抗剂。NPD12704 还抑制了 CLV3 与 BAM1 的结合,但对 CLV3 与 BAM1 最接近的同源物 CLV1 的结合几乎没有干扰,表明其具有优先的受体特异性。用 NPD12704 处理突变体幼苗增强了伸长的茎尖分生组织表型。我们的结果提供了一个技术框架,使我们能够高通量地鉴定出特异性控制植物中受体激酶介导的肽激素信号的非肽小分子化学物质。