Fang Yinzhi, Judkins Joshua C, Boyd Samantha J, Am Ende Christopher W, Rohlfing Katarina, Huang Zhen, Xie Yixin, Johnson Douglas S, Fox Joseph M
Department of Chemistry and Biochemistry, University of Delaware, Newark DE 19716.
Pfizer Worldwide Research and Development, Cambridge, Massachusetts 02139 and Groton, Connecticut 06340.
Tetrahedron. 2019 Aug 9;75(32):4307-4317. doi: 10.1016/j.tet.2019.05.038. Epub 2019 May 26.
Conformationally strained cyclooctenes (TCOs) engage in bioorthogonal reactions with tetrazines with second order rate constants that can exceed 10 Ms. The goal of this study was to provide insight into the stability of TCO reagents and to develop methods for stabilizing TCO reagents for long-term storage. The radical inhibitor Trolox suppresses TCO isomerization under high thiol concentrations and TCO shelf-life can be greatly extended by protecting them as stable Ag(I) metal complexes. H NMR studies show that Ag-complexation is thermodynamically favorable but the kinetics of dissociation are very rapid, and TCO•AgNO complexes are immediately dissociated upon addition of NaCl which is present in high concentration in cell media. The AgNO complex of a highly reactive s-TCO-TAMRA conjugate was shown to label a protein-tetrazine conjugate in live cells with faster kinetics and similar labeling yield relative to a 'traditional' TCO-TAMRA conjugate.
构象受限的环辛烯(TCOs)与四嗪发生生物正交反应,其二级速率常数可超过10 M⁻¹s⁻¹。本研究的目的是深入了解TCO试剂的稳定性,并开发稳定TCO试剂以进行长期储存的方法。自由基抑制剂Trolox在高硫醇浓度下可抑制TCO异构化,并且通过将TCOs保护为稳定的Ag(I)金属配合物,其保质期可大大延长。¹H NMR研究表明,Ag络合在热力学上是有利的,但解离动力学非常快,并且在加入细胞培养基中高浓度存在的NaCl后,TCO•AgNO₃配合物会立即解离。相对于“传统”的TCO-TAMRA共轭物,高反应性的s-TCO-TAMRA共轭物的AgNO₃配合物在活细胞中标记蛋白质-四嗪共轭物时具有更快的动力学和相似的标记产率。