Zhang Jianan, Tsutsui Yuko, Li Hengyi, Li Tongqing, Wang Yueyue, Laraki Salma, Alarcon-Frias Sofia, Stayrook Steven E, Klein Daryl E
Department of Pharmacology, Yale University School of Medicine, New Haven, CT, 06520, USA.
Yale Cancer Biology Institute, Yale University, West Haven, CT, 06516, USA.
Nat Commun. 2025 Jan 18;16(1):808. doi: 10.1038/s41467-025-55943-6.
Sevenless, the Drosophila homologue of ROS1 (University of Rochester Sarcoma) (herein, dROS1) is a receptor tyrosine kinase (RTK) essential for the differentiation of Drosophila R7 photoreceptor cells. Activation of dROS1 is mediated by binding to the extracellular region (ECR) of the GPCR (G protein coupled receptor) BOSS (Bride Of Sevenless) on adjacent cells. Activation of dROS1 by BOSS leads to subsequent downstream signaling pathways including SOS (Son of Sevenless). However, the physical basis for how dROS1 interacts with BOSS has long remained unknown. Here we provide a cryo-EM structure of dROS1's extracellular region, which mediates ligand binding. We show that the extracellular region of dROS1 adopts a folded-over conformation stabilized by an N-terminal domain comprised of two disulfide stapled helical hairpins. We further narrowed down the interacting binding epitopes on both dROS1 and BOSS using hydrogen-deuterium exchange mass spectrometry (HDX-MS). This includes beta-strands in dROS1's third Fibronectin type III (FNIII) domain and a C-terminal peptide in BOSS' ECR. Our mutagenesis studies, coupled with AlphaFold complex predictions, support a binding interaction mediated by a hydrophobic interaction and beta-strand augmentation between these regions. Our findings provide a fundamental understanding of the regulatory function of dROS1 and further provide mechanistic insight into the human ortholog and oncogene ROS1.
Sevenless是ROS1(罗切斯特大学肉瘤)在果蝇中的同源物(在此称为dROS1),是一种受体酪氨酸激酶(RTK),对果蝇R7光感受器细胞的分化至关重要。dROS1的激活是通过与相邻细胞上的GPCR(G蛋白偶联受体)BOSS(Sevenless的新娘)的细胞外区域(ECR)结合来介导的。BOSS对dROS1的激活导致随后的下游信号通路,包括SOS(Sevenless之子)。然而,dROS1与BOSS如何相互作用的物理基础长期以来一直未知。在此,我们提供了介导配体结合的dROS1细胞外区域的冷冻电镜结构。我们表明,dROS1的细胞外区域采用一种折叠构象,由一个由两个二硫键固定的螺旋发夹组成的N端结构域稳定。我们使用氢-氘交换质谱(HDX-MS)进一步缩小了dROS1和BOSS上相互作用的结合表位。这包括dROS1的第三个纤连蛋白III型(FNIII)结构域中的β链和BOSS的ECR中的一个C端肽。我们的诱变研究,结合AlphaFold复合物预测,支持这些区域之间由疏水相互作用和β链增强介导的结合相互作用。我们的发现为dROS1的调节功能提供了基本理解,并进一步为人类同源物和癌基因ROS1提供了机制性见解。