Institute of Nanochemistry and Nanobiology, Shanghai University, Shanghai 200444, China.
Institute of Nanochemistry and Nanobiology, Shanghai University, Shanghai 200444, China;
Proc Natl Acad Sci U S A. 2018 Jan 2;115(1):E34-E43. doi: 10.1073/pnas.1713526115. Epub 2017 Dec 18.
To impart biomedical functions to nanoparticles (NPs), the common approach is to conjugate functional groups onto NPs by dint of the functions of those groups per se. It is still beyond current reach to create protein-like specific interactions and functions on NPs by conformational engineering of nonfunctional groups on NPs. Here, we develop a conformational engineering method to create an NP-based artificial antibody, denoted "Goldbody," through conformational reconstruction of the complementary-determining regions (CDRs) of natural antibodies on gold NPs (AuNPs). The seemingly insurmountable task of controlling the conformation of the CDR loops, which are flexible and nonfunctional in the free form, was accomplished unexpectedly in a simple way. Upon anchoring both terminals of the free CDR loops on AuNPs, we managed to reconstruct the "active" conformation of the CDR loops by tuning the span between the two terminals and, as a result, the original specificity was successfully reconstructed on the AuNPs. Two Goldbodies have been created by this strategy to specifically bind with hen egg white lysozyme and epidermal growth factor receptor, with apparent affinities several orders of magnitude stronger than that of the original natural antibodies. Our work demonstrates that it is possible to create protein-like functions on NPs in a protein-like way, namely by tuning flexible surface groups to the correct conformation. Given the apparent merits, including good stability, of Goldbodies, we anticipate that a category of Goldbodies could be created to target different antigens and thus used as substitutes for natural antibodies in various applications.
为了赋予纳米粒子(NPs)生物医学功能,常见的方法是通过基团本身的功能将功能基团共轭到 NPs 上。通过 NPs 上非功能基团的构象工程来在 NPs 上创建类似蛋白质的特定相互作用和功能,目前仍难以实现。在这里,我们开发了一种构象工程方法,通过在金纳米粒子(AuNPs)上对天然抗体的互补决定区(CDRs)进行构象重建,创建了一种基于 NP 的人工抗体,称为“Goldbody”。控制 CDR 环构象的看似不可逾越的任务以一种简单的方式出人意料地完成了,CDR 环在自由形式下是灵活且无功能的。通过将自由 CDR 环的两个末端固定在 AuNPs 上,我们设法通过调整两个末端之间的跨度来重建 CDR 环的“活性”构象,结果成功地在 AuNPs 上重建了原始特异性。通过这种策略已经创建了两种 Goldbody,它们可以特异性地与鸡卵清溶菌酶和表皮生长因子受体结合,与原始天然抗体相比,亲和力明显强几个数量级。我们的工作表明,有可能以类似于蛋白质的方式在 NPs 上创建类似蛋白质的功能,即通过将灵活的表面基团调谐到正确的构象。鉴于 Goldbody 的明显优势,包括良好的稳定性,我们预计可以创建一类 Goldbody 来针对不同的抗原,从而在各种应用中替代天然抗体。