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Crystal structure of a plant leucine rich repeat protein with two island domains

机译:具有两个岛结构域的富含植物亮氨酸的重复蛋白的晶体结构

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Leucine rich repeat (LRR) domain, characterized by a repetitive sequence pattern rich in leucine residues, is a universal protein-protein interaction motif present in all life forms. LRR repeats interrupted by sequences of 30–70 residues (termed island domain, ID) have been found in some plant LRR receptor-like kinases (RLKs) and animal Toll-like receptors (TLR7-9). Recent studies provide insight into how a single ID is structurally integrated into an LRR protein. However, structural information on an LRR protein with two IDs is lacking. The receptor-like protein kinase 2 (RPK2) is an LRR-RLK and has important roles in controlling plant growth and development by perception and transduction of hormone signal. Here we present the crystal structure of the extracellular LRR domain of RPK2 (RPK2-LRR) containing two IDs from Arabidopsis. The structure reveals that both of the IDs are helical and located at the central region of the single RPK2-LRR solenoid. One of them binds to the inner surface of the solenoid, whereas the other one mainly interacts with the lateral side. Unexpectedly, a long loop immediately following the N-terminal capping domain of RPK2-LRR is presented toward and sandwiched between the two IDs, further stabilizing their embedding to the LRR solenoid. A potential ligand binding site formed by the two IDs and the solenoid is located at the C-terminal side of RPK2-LRR. The structural information of RPK2-LRR broadens our understanding toward the large family of LRR proteins and provides insight into RPK2-mediated signaling.
机译:富含亮氨酸的重复序列(LRR)域以富含亮氨酸残基的重复序列模式为特征,是一种存在于所有生命形式中的通用蛋白质-蛋白质相互作用基序。在一些植物LRR受体样激酶(RLKs)和动物Toll样受体(TLR7-9)中发现了被30-70个残基序列中断的LRR重复序列(称为岛结构域,ID)。最近的研究提供了有关单个ID如何在结构上整合到LRR蛋白中的见解。但是,缺少有关具有两个ID的LRR蛋白的结构信息。受体样蛋白激酶2(RPK2)是一种LRR-RLK,在通过感知和转导激素信号来控制植物生长和发育中具有重要作用。在这里,我们介绍RPK2(RPK2-LRR)的胞外LRR域的晶体结构,其中包含两个来自拟南芥的ID。该结构显示两个ID均为螺旋形,并且位于单个RPK2-LRR螺线管的中央区域。其中一个束缚在螺线管的内表面上,而另一个束缚在侧面上。出乎意料的是,紧接着RPK2-LRR的N端帽域出现一个长环,朝向并夹在两个ID之间,进一步稳定了它们嵌入LRR螺线管的过程。由两个ID和螺线管形成的潜在配体结合位点位于RPK2-LRR的C端。 RPK2-LRR的结构信息拓宽了我们对LRR蛋白大家族的了解,并提供了对RPK2介导的信号传导的深入了解。

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