Department of Chemistry, Stony Brook University, 100 Nicolls Road, Stony Brook, NY-11794, USA.
Departamento de Química Orgánica, Universitat de València, Avda. Vicente Andrés Estellés s/n, Burjassot, Valencia, 46100, Spain.
Chembiochem. 2024 Nov 4;25(21):e202400304. doi: 10.1002/cbic.202400304. Epub 2024 Oct 23.
Bioorthogonal chemistry has become a mainstay in chemical biology and is making inroads in the clinic with recent advances in protein targeting and drug release. Since the field's beginning, a major focus has been on designing bioorthogonal reagents with good selectivity, reactivity, and stability in complex biological environments. More recently, chemists have imbued reagents with new functionalities like click-and-release or light/enzyme-controllable reactivity. We have previously developed a controllable cyclopropene-based bioorthogonal ligation, which has excellent stability in physiological conditions and can be triggered to react with tetrazines by exposure to enzymes, biologically significant small molecules, or light spanning the visual spectrum. Here, to improve reactivity and gain a better understanding of this system, we screened diene reaction partners for the cyclopropene. We found that a cyclopropene-quinone pair is 26 times faster than reactions with 1,2,4,5-tetrazines. Additionally, we showed that the reaction of the cyclopropene-quinone pair can be activated by two orthogonal mechanisms: caging group removal on the cyclopropene and oxidation/reduction of the quinone. Finally, we demonstrated that this caged cyclopropene-quinone can be used as an imaging tool to label the membranes of fixed, cultured cells.
生物正交化学已成为化学生物学的主要支柱,并随着蛋白质靶向和药物释放技术的最新进展在临床上取得突破。自该领域创立以来,人们的主要关注点一直是设计具有良好选择性、反应活性和在复杂生物环境中稳定性的生物正交试剂。最近,化学家们赋予试剂新的功能,如点击释放或光/酶可控反应性。我们之前开发了一种基于可控环丙烯的生物正交连接,它在生理条件下具有极好的稳定性,可以通过暴露于酶、具有生物学意义的小分子或跨越可见光谱的光来触发与四嗪的反应。在这里,为了提高反应活性并更好地了解该体系,我们筛选了环丙烯的二烯反应伙伴。我们发现,环丙烯-醌对与 1,2,4,5-四嗪的反应速度快 26 倍。此外,我们表明,环丙烯-醌对的反应可以通过两种正交机制激活:环丙烯上的笼状基团去除和醌的氧化/还原。最后,我们证明这种笼状环丙烯-醌可用作标记固定培养细胞的膜的成像工具。