Laboratory of Developmental Neurobiology, Department of Molecular Cell Biology, Leiden University Medical Center, Leiden, The Netherlands.
Mol Cell Biol. 2013 Oct;33(20):4116-27. doi: 10.1128/MCB.00169-13. Epub 2013 Aug 26.
Ryk pseudokinase receptors act as important transducers of Wnt signals, particularly in the nervous system. Little is known, however, of their interactions at the cell surface. Here, we show that a Drosophila Ryk family member, DERAILED (DRL), forms cell surface homodimers and can also heterodimerize with the two other fly Ryks, DERAILED-2 and DOUGHNUT ON 2. DERAILED homodimerization levels increase significantly in the presence of its ligand, WNT5. In addition, DERAILED displays ligand-independent dimerization mediated by a motif in its transmembrane domain. Increased dimerization of DRL upon WNT5 binding or upon the replacement of DERAILED's extracellular domain with the immunoglobulin Fc domain results in an increased recruitment of the Src family kinase SRC64B, a previously identified downstream pathway effector. Formation of the SRC64B/DERAILED complex requires SRC64B's SH2 domain and DERAILED's PDZ-binding motif. Mutations in DERAILED's inactive tyrosine kinase-homologous domain also disrupt the formation of DERAILED/SRC64B complexes, indicating that its conformation is likely important in facilitating its interaction with SRC64B. Finally, we show that DERAILED's function during embryonic axon guidance requires its Wnt-binding domain, a putative juxtamembrane extracellular tetrabasic cleavage site, and the PDZ-binding domain, indicating that DERAILED's activation involves a complex set of events including both dimerization and proteolytic processing.
Ryk 假激酶受体作为 Wnt 信号的重要转导器,特别是在神经系统中。然而,它们在细胞表面的相互作用知之甚少。在这里,我们表明,一种果蝇 Ryk 家族成员 DERAILED(DRL)形成细胞表面同源二聚体,并且还可以与另外两种果蝇 Ryks DERAILED-2 和 DOUGHNUT ON 2 异二聚化。在其配体 WNT5 的存在下,DRL 的同源二聚化水平显着增加。此外,DRL 通过其跨膜结构域中的基序显示出配体非依赖性二聚化。DRL 与 WNT5 结合或用免疫球蛋白 Fc 结构域取代 DERAILED 的细胞外结构域后,DRL 的二聚化增加,导致Src 家族激酶 SRC64B 的募集增加,SRC64B 是先前鉴定的下游途径效应物。SRC64B/DRL 复合物的形成需要 SRC64B 的 SH2 结构域和 DRL 的 PDZ 结合基序。DRL 的无活性酪氨酸激酶同源结构域中的突变也破坏了 DRL/SRC64B 复合物的形成,表明其构象可能在促进与 SRC64B 的相互作用中很重要。最后,我们表明 DRL 在胚胎轴突导向中的功能需要其 Wnt 结合结构域、假定的近膜细胞外四碱性切割位点和 PDZ 结合结构域,表明 DRL 的激活涉及一系列复杂的事件,包括二聚化和蛋白水解加工。