Bioconjug Chem. 2018 Apr 18;29(4):1209-1218. doi: 10.1021/acs.bioconjchem.8b00004. Epub 2018 Feb 19.
Genetic incorporation of biologically orthogonal functional groups into macromolecules has the potential to yield efficient, controlled, reproducible, site-specific conjugation of affinity ligands, contrast agents, or therapeutic cargoes. Here, we applied this approach to ferritin, a ubiquitous iron-storage protein that self-assembles into multimeric nanocages with remarkable stability, size uniformity (12 nm), and endogenous capacity for loading and transport of a variety of inorganic and organic cargoes. The unnatural amino acid, 4-azidophenylalanine (4-AzF), was incorporated at different sites in the human ferritin light chain (hFTL) to allow site-specific conjugation of alkyne-containing small molecules or affinity ligands to the exterior surface of the nanocage. The optimal positioning of the 4-AzF residue was evaluated by screening a library of variants for the efficiency of copper-free click conjugation. One of the engineered ferritins, hFTL-5X, was found to accommodate ∼14 small-molecule fluorophores (AlexaFluor 488) and 3-4 IgG molecules per nanocage. Intravascular injection in mice of radiolabeled hFTL-5X carrying antibody to cell adhesion molecule ICAM-1, but not control IgG, enabled specific targeting to the lung due to high basal expression of ICAM-1 (43.3 ± 6.99 vs 3.48 ± 0.14%ID/g for Ab vs IgG). Treatment of mice with endotoxin known to stimulate inflammatory ICAM-1 overexpression resulted in 2-fold enhancement of pulmonary targeting (84.4 ± 12.89 vs 43.3 ± 6.99%ID/g). Likewise, injection of fluorescent, ICAM-targeted hFTL-5X nanocages revealed the effect of endotoxin by enhancement of near-infrared signal, indicating potential utility of this approach for both vascular targeting and imaging.
将生物正交官能团基因整合到生物大分子中具有高效、可控、可重复、定点偶联亲和配体、对比剂或治疗性载药的潜力。在这里,我们将这种方法应用于铁蛋白,这是一种普遍存在的铁储存蛋白,它可以自我组装成具有显著稳定性、尺寸均匀性(12nm)和内在负载和输送各种无机和有机载药能力的多聚体纳米笼。非天然氨基酸 4-叠氮苯丙氨酸(4-AzF)被整合到人铁蛋白轻链(hFTL)的不同位置,以允许炔基小分子或亲和配体定点偶联到纳米笼的外表面。通过筛选变体文库来评估 4-AzF 残基的最佳定位,以评估铜自由点击偶联的效率。其中一种工程铁蛋白 hFTL-5X 被发现可以容纳约 14 个小分子荧光团(AlexaFluor 488)和每个纳米笼 3-4 个 IgG 分子。携带细胞黏附分子 ICAM-1 抗体的放射性标记 hFTL-5X 在小鼠体内的静脉内注射,而不是对照 IgG,由于 ICAM-1 的高基础表达(Ab 与 IgG 相比为 43.3±6.99%ID/g 与 3.48±0.14%ID/g),可以特异性靶向肺部。用已知刺激炎症性 ICAM-1 过表达的内毒素处理小鼠,导致肺部靶向增强 2 倍(84.4±12.89%ID/g 与 43.3±6.99%ID/g)。同样,注射荧光、ICAM 靶向 hFTL-5X 纳米笼通过增强近红外信号显示内毒素的效果,表明这种方法在血管靶向和成像方面具有潜在的应用价值。