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STRUCTURAL BASIS OF ROBO PROLINE-RICH MOTIF RECOGNITION BY THE SRGAP1 SH3 DOMAIN IN THE SLIT-ROBO SIGNALING PATHWAY

机译:在Slit-Robo信号通路中通过SRGAP1 SH3域识别富含脯氨酸的机器人的结构基础

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摘要

The srGAPs are important components in the intracellular pathway mediating Slit-Robo signaling in axon guidance and cell migration. We report the first crystal structure of the srGAP1 SH3 domain at 1.8 Å resolution. The unusual side chain conformation of the conserved Phe13 in the P1 pocket renders the ligand binding pocket shallow and narrow, which contributes towards the low binding affinity. Moreover, the opposing electrostatic charge and the hydrophobic properties of the P3 specificity pocket are consistent with the observed binding characteristics of the srGAP1 SH3 domain to its ligand. Surface plasmon resonance experiments indicate that the srGAP1 SH3 domain interacts with its natural ligand in a C to N orientation. The srGAP1 SH3 domain can bind to both the CC2 and CC3 motifs in vitro. The N-terminal two acidic residues in the CC3 motif recognition site are necessary for srGAP1 SH3 domain binding. A longer CC3 peptide (CC3-FL) binds with greater affinity than its shorter counterpart, suggesting that the residues surrounding the proline-rich core are important for protein-peptide interactions. Our study reveals previously unknown properties of the srGAP-Robo interaction. Our data provide a structural basis for the srGAP-Robo interaction, consistent with the role of the Robo intracellular domain in interacting with other downstream signaling molecules and mediating versatile and dynamic responses to axon guidance and cell migration cues.
机译:srGAP是轴突引导和细胞迁移中介导Slit-Robo信号传导的细胞内途径中的重要组成部分。我们报告了srGAP1 SH3域的第一个晶体结构,分辨率为1.8Å。 P1口袋中保守的Phe13的不寻常的侧链构象使配体结合口袋变浅和变窄,这有助于降低结合亲和力。此外,相反的静电荷和P3特异性口袋的疏水特性与srGAP1 SH3域与其配体的结合特性一致。表面等离子体共振实验表明,srGAP1 SH3结构域与其天然配体以C到N方向相互作用。 srGAP1 SH3结构域可以在体外与CC2和CC3基序结合。 CC3基序识别位点的N末端两个酸性残基对于srGAP1 SH3域结合是必需的。较长的CC3肽(CC3-FL)与较短的CC3肽相比具有更高的亲和力,表明富含脯氨酸的核心周围的残基对于蛋白质-肽相互作用至关重要。我们的研究揭示了srGAP-Robo相互作用以前未知的特性。我们的数据为srGAP-Robo相互作用提供了结构基础,与Robo胞内域在与其他下游信号分子相互作用以及介导轴突引导和细胞迁移线索的通用和动态响应中的作用一致。

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