Department of Chemistry, University of Massachusetts , Amherst, Massachusetts 01003, United States.
J Am Chem Soc. 2013 Sep 25;135(38):14179-88. doi: 10.1021/ja404940s. Epub 2013 Sep 11.
Supramolecular assemblies formed by amphiphilic homopolymers with negatively charged groups in the hydrophilic segment have been designed to enable high labeling selectivity toward reactive side chain functional groups in peptides. The negatively charged interiors of the supramolecular assemblies are found to block the reactivity of protonated amines that would otherwise be reactive in aqueous solution, while maintaining the reactivity of nonprotonated amines. Simple changes to the pH of the assemblies' interiors allow control over the reactivity of different functional groups in a manner that is dependent on the pKa of a given peptide functional group. The labeling studies carried out in positively charged supramolecular assemblies and free buffer solution show that, even when the amine is protonated, labeling selectivity exists only when complementary electrostatic interactions are present, thereby demonstrating the electrostatically controlled nature of these reactions.
具有亲水性片段中带负电荷基团的两亲性均聚物形成的超分子组装体被设计用于使标记对肽中反应性侧链官能团具有高选择性。发现超分子组装体的带负电荷的内部阻止了质子化胺的反应性,否则质子化胺在水溶液中是反应性的,同时保持了非质子化胺的反应性。通过简单改变组装体内部的 pH 值,可以控制不同官能团的反应性,这种控制方式取决于给定肽官能团的 pKa。在带正电荷的超分子组装体和游离缓冲溶液中进行的标记研究表明,即使胺被质子化,只有当存在互补的静电相互作用时才存在标记选择性,从而证明了这些反应的静电控制性质。