Leiden/Amsterdam Center for Drug Research, Division of Medicinal Chemistry, Faculty of Sciences, VU University Amsterdam, 1081 HV Amsterdam, The Netherlands.
Proc Natl Acad Sci U S A. 2010 Nov 23;107(47):20565-70. doi: 10.1073/pnas.1012865107. Epub 2010 Nov 8.
The important family of G protein-coupled receptors has so far not been targeted very successfully with conventional monoclonal antibodies. Here we report the isolation and characterization of functional VHH-based immunoglobulin single variable domains (or nanobodies) against the chemokine receptor CXCR4. Two highly selective monovalent nanobodies, 238D2 and 238D4, were obtained using a time-efficient whole cell immunization, phage display, and counterselection method. The highly selective VHH-based immunoglobulin single variable domains competitively inhibited the CXCR4-mediated signaling and antagonized the chemoattractant effect of the CXCR4 ligand CXCL12. Epitope mapping showed that the two nanobodies bind to distinct but partially overlapping sites in the extracellular loops. Short peptide linkage of 238D2 with 238D4 resulted in significantly increased affinity for CXCR4 and picomolar activity in antichemotactic assays. Interestingly, the monovalent nanobodies behaved as neutral antagonists, whereas the biparatopic nanobodies acted as inverse agonists at the constitutively active CXCR4-N3.35A. The CXCR4 nanobodies displayed strong antiretroviral activity against T cell-tropic and dual-tropic HIV-1 strains. Moreover, the biparatopic nanobody effectively mobilized CD34-positive stem cells in cynomolgus monkeys. Thus, the nanobody platform may be highly effective at generating extremely potent and selective G protein-coupled receptor modulators.
迄今为止,G 蛋白偶联受体这一重要家族尚未被传统的单克隆抗体成功靶向。在这里,我们报告了针对趋化因子受体 CXCR4 的功能性 VHH 基免疫球蛋白单可变结构域(或纳米抗体)的分离和特性。使用高效的全细胞免疫、噬菌体展示和反选择方法,获得了两种高度选择性的单价纳米抗体 238D2 和 238D4。基于高度选择性的 VHH 的免疫球蛋白单可变结构域竞争性抑制 CXCR4 介导的信号转导,并拮抗 CXCR4 配体 CXCL12 的趋化作用。表位作图显示,这两种纳米抗体结合到细胞外环中的不同但部分重叠的位点。238D2 与 238D4 的短肽连接导致对 CXCR4 的亲和力显著增加,在抗趋化测定中具有皮摩尔活性。有趣的是,单价纳米抗体表现为中性拮抗剂,而双价纳米抗体在组成型激活的 CXCR4-N3.35A 中表现为反向激动剂。CXCR4 纳米抗体对 T 细胞嗜性和双嗜性 HIV-1 株显示出强大的抗逆转录病毒活性。此外,双价纳米抗体有效地动员了食蟹猴的 CD34 阳性干细胞。因此,纳米抗体平台可能非常有效地产生极其有效和选择性的 G 蛋白偶联受体调节剂。