Department of Chemistry, University of California , Berkeley, California 94720-1460, United States.
Laboratory of Organic Chemistry, D-CHAB, ETH Zurich , Wolfgang-Pauli-Strasse 10, 8093 Zurich, Switzerland.
J Am Chem Soc. 2017 Mar 15;139(10):3767-3773. doi: 10.1021/jacs.6b12966. Epub 2017 Mar 2.
The synthesis of complex protein-based bioconjugates has been facilitated greatly by recent developments in chemoselective methods for biomolecular modification. The oxidative coupling of o-aminophenols or catechols with aniline functional groups is chemoselective, mild, and rapid; however, the oxidatively sensitive nature of the electron-rich aromatics and the paucity of commercial sources pose some obstacles to the general use of these reactive strategies. Herein, we identify o-methoxyphenols as air-stable, commercially available derivatives that undergo efficient oxidative couplings with anilines in the presence of periodate as oxidant. Mechanistic considerations informed the development of a preoxidation protocol that can greatly reduce the amount of periodate necessary for effective coupling. The stability and versatility of these reagents was demonstrated through the synthesis of complex protein-protein bioconjugates using a site-selective heterobifunctional cross-linker comprising both o-methoxyphenol and 2-pyridinecarboxaldehyde moieties. This compound was used to link epidermal growth factor to genome-free MS2 viral capsids, affording nanoscale delivery vectors that can target a variety of cancer cell types.
近年来,用于生物分子修饰的化学选择性方法的发展极大地促进了复杂蛋白质结合物的合成。邻氨基苯酚或儿茶酚与苯胺官能团的氧化偶联具有化学选择性、温和且快速;然而,富电子芳烃的氧化敏感性和商业来源的缺乏对这些反应性策略的广泛应用构成了一些障碍。在此,我们将邻甲氧基苯酚鉴定为空气稳定、商业可得的衍生物,在高碘酸盐作为氧化剂存在下,可与苯胺发生有效氧化偶联。通过预氧化方案的开发,我们可以了解到反应机理,该方案可以大大减少有效偶联所需的高碘酸盐的量。通过使用包含邻甲氧基苯酚和 2-吡啶甲醛部分的位点选择性杂双功能交联剂合成复杂的蛋白质-蛋白质生物缀合物,证明了这些试剂的稳定性和多功能性。该化合物被用于将表皮生长因子连接到无基因组 MS2 病毒衣壳上,提供了可以靶向多种癌细胞类型的纳米级递药载体。