Warner Margaret L, Bell Tufica, Pioszak Augen A
Department of Biochemistry and Molecular Biology, The University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma.
Department of Biochemistry and Molecular Biology, The University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma
Mol Pharmacol. 2015;87(3):410-20. doi: 10.1124/mol.114.095133. Epub 2014 Dec 12.
Secreted R-spondin proteins (RSPOs1-4) function as adult stem cell growth factors by potentiating Wnt signaling. Simultaneous binding of distinct regions of the RSPO Fu1-Fu2 domain module to the extracellular domains (ECDs) of the LGR4 G protein-coupled receptor and the ZNRF3 transmembrane E3 ubiquitin ligase regulates Wnt receptor availability. Here, we examine the molecular basis for the differing signaling strengths of RSPOs1-4 using purified RSPO Fu1-Fu2, LGR4 ECD, and ZNRF3 ECD proteins in Wnt signaling and receptor binding assays, and we engineer novel high-potency RSPOs. RSPO2/3/4 had similar signaling potencies that were stronger than that of RSPO1, whereas RSPO1/2/3 had similar efficacies that were greater than that of RSPO4. The RSPOs bound LGR4 with affinity rank order RSPO4 > RSPO2/3 > RSPO1 and ZNRF3 with affinity rank order RSPO2/3 > > RSPO1 > RSPO4. An RSPO2-4 chimera combining RSPO2 ZNRF3 binding with RSPO4 LGR4 binding was a "Superspondin" that exhibited enhanced ternary complex formation and 10-fold stronger signaling potency than RSPO2 and efficacy equivalent to RSPO2. An RSPO4-1 chimera combining RSPO4 ZNRF3 binding with RSPO1 LGR4 binding was a "Poorspondin" that exhibited signaling potency similar to RSPO1 and efficacy equivalent to RSPO4. Conferring increased ZNRF3 binding upon RSPO4 with amino acid substitutions L56F, I58L, and I63M enhanced its signaling potency and efficacy. Our results reveal the molecular basis for RSPOs1-4 activity differences and suggest that signaling potency is determined by ternary complex formation ability, whereas efficacy depends on ZNRF3 recruitment. High-potency RSPOs may be of value for regenerative medicine and/or therapeutic applications.
分泌型R-spondin蛋白(RSPOs1-4)通过增强Wnt信号传导发挥成体干细胞生长因子的作用。RSPO Fu1-Fu2结构域模块的不同区域与LGR4 G蛋白偶联受体的细胞外结构域(ECD)和ZNRF3跨膜E3泛素连接酶同时结合,调节Wnt受体的可用性。在这里,我们使用纯化的RSPO Fu1-Fu2、LGR4 ECD和ZNRF3 ECD蛋白进行Wnt信号传导和受体结合试验,研究RSPOs1-4不同信号强度的分子基础,并设计新型高效能的RSPOs。RSPO2/3/4具有相似的信号强度,比RSPO1更强,而RSPO1/2/3具有相似的效能,比RSPO4更高。RSPOs与LGR4的结合亲和力排序为RSPO4 > RSPO2/3 > RSPO1,与ZNRF3的结合亲和力排序为RSPO2/3 > > RSPO1 > RSPO4。一种结合了RSPO2与ZNRF3结合以及RSPO4与LGR4结合的RSPO2-4嵌合体是一种“超级应答蛋白”,它表现出增强的三元复合物形成能力,信号强度比RSPO2强10倍,效能与RSPO2相当。一种结合了RSPO4与ZNRF3结合以及RSPO1与LGR4结合的RSPO4-1嵌合体是一种“低效能应答蛋白”,它表现出与RSPO1相似的信号强度和与RSPO4相当的效能。通过L56F、I58L和I63M氨基酸替换赋予RSPO4增加的ZNRF3结合能力,增强了其信号强度和效能。我们的结果揭示了RSPOs1-4活性差异的分子基础,并表明信号强度由三元复合物形成能力决定,而效能取决于ZNRF3的募集。高效能的RSPOs可能对再生医学和/或治疗应用具有价值。