Department of Chemical and Environmental Engineering, Bourns College of Engineering, University of California Riverside, Riverside, California.
Division of Biomedical Sciences, School of Medicine, University of California Riverside, Riverside, California.
Biotechnol Bioeng. 2018 Nov;115(11):2673-2682. doi: 10.1002/bit.26814. Epub 2018 Sep 15.
Targeting effectual epitopes is essential for therapeutic antibodies to accomplish their desired biological functions. This study developed a competitive dual color fluorescence-activated cell sorting (FACS) to maturate a matrix metalloprotease 14 (MMP-14) inhibitory antibody. Epitope-specific screening was achieved by selection on MMP-14 during competition with N-terminal domain of tissue inhibitor of metalloproteinase-2 (TIMP-2) (nTIMP-2), a native inhibitor of MMP-14 binding strongly to its catalytic cleft. 3A2 variants with high potency, selectivity, and improved affinity and proteolytic stability were isolated from a random mutagenesis library. Binding kinetics indicated that the affinity improvements were mainly from slower dissociation rates. In vitro degradation tests suggested the isolated variants had half lives 6-11-fold longer than the wt. Inhibition kinetics suggested they were competitive inhibitors which showed excellent selectivity toward MMP-14 over highly homologous MMP-9. Alanine scanning revealed that they bound to the vicinity of MMP-14 catalytic cleft especially residues F204 and F260, suggesting that the desired epitope was maintained during maturation. When converted to immunoglobulin G, B3 showed 5.0 nM binding affinity and 6.5 nM inhibition potency with in vivo half-life of 4.6 days in mice. In addition to protease inhibitory antibodies, the competitive FACS described here can be applied for discovery and engineering biosimilars, and in general for other circumstances where epitope-specific modulation is needed.
靶向有效表位对于治疗性抗体发挥其预期的生物学功能至关重要。本研究开发了一种竞争性双色荧光激活细胞分选(FACS)技术,以成熟基质金属蛋白酶 14(MMP-14)抑制抗体。通过在与基质金属蛋白酶抑制剂 2(TIMP-2)的 N 端结构域(nTIMP-2)竞争中对 MMP-14 进行选择,实现了表位特异性筛选,nTIMP-2 是 MMP-14 的天然抑制剂,与 MMP-14 的催化裂缝结合紧密。从随机诱变文库中分离出具有高效力、选择性和改善的亲和力和蛋白水解稳定性的 3A2 变体。结合动力学表明,亲和力的提高主要来自较慢的解离速率。体外降解试验表明,分离的变体的半衰期比野生型长 6-11 倍。抑制动力学表明它们是竞争性抑制剂,对高度同源的 MMP-9 具有优异的选择性。丙氨酸扫描表明它们结合在 MMP-14 催化裂缝附近,特别是残基 F204 和 F260,表明在成熟过程中保持了所需的表位。当转化为免疫球蛋白 G 时,B3 表现出 5.0 nM 的结合亲和力和 6.5 nM 的抑制效力,在小鼠体内的半衰期为 4.6 天。除了蛋白酶抑制剂抗体,本文所述的竞争性 FACS 还可用于发现和工程生物类似物,以及一般需要表位特异性调节的其他情况。