Dintzner Ethan, Bandekar Sumit J, Leon Katherine, Cechova Kristina, Vafabakhsh Reza, Araç Demet
bioRxiv. 2024 May 10:2024.02.16.580607. doi: 10.1101/2024.02.16.580607.
Adhesion G Protein-coupled receptors (aGPCRs) transduce extracellular adhesion signals into cytoplasmic signaling pathways. ADGRG6/GPR126 is an aGPCR critical for axon myelination, heart development and ear development; and is associated with developmental diseases and cancers. ADGRG6 has a large, alternatively-spliced, five-domain extracellular region (ECR) that samples different conformations and regulates receptor signaling. However, the molecular details of how the ECR regulates signaling are unclear. Herein, we studied the conformational dynamics of the conserved CUB domain which is located at the distal N-terminus of the ECR and is deleted in an alternatively-spliced isoform ( CUB). We showed that the CUB isoform has decreased signaling. Molecular dynamics simulations suggest that the CUB domain is involved in interdomain contacts to maintain a compact ECR conformation. A cancer-associated CUB domain mutant, C94Y, drastically perturbs the ECR conformation and results in elevated signaling, whereas another CUB mutant, Y96A, located near a conserved Ca -binding site, decreases signaling. Our results suggest an ECR-mediated mechanism for ADGRG6 regulation in which the CUB domain instructs conformational changes within the ECR to regulate receptor signaling.
粘附G蛋白偶联受体(aGPCRs)将细胞外粘附信号转导至细胞质信号通路。ADGRG6/GPR126是一种对轴突髓鞘形成、心脏发育和耳朵发育至关重要的aGPCR;并且与发育性疾病和癌症相关。ADGRG6具有一个大的、可变剪接的、五结构域细胞外区域(ECR),该区域呈现不同构象并调节受体信号传导。然而,ECR如何调节信号传导的分子细节尚不清楚。在此,我们研究了位于ECR远端N端且在一种可变剪接异构体(ΔCUB)中缺失的保守CUB结构域的构象动力学。我们表明,ΔCUB异构体的信号传导降低。分子动力学模拟表明,CUB结构域参与结构域间接触以维持紧凑的ECR构象。一种与癌症相关的CUB结构域突变体C94Y,极大地扰乱了ECR构象并导致信号传导升高,而另一个位于保守钙结合位点附近的CUB突变体Y96A则降低了信号传导。我们的结果提示了一种ADGRG6调节的ECR介导机制,其中CUB结构域指导ECR内的构象变化以调节受体信号传导。