化学
背景(考古学)
生物正交化学
化学改性
胺气处理
翻译后修饰
组合化学
生物结合
赖氨酸
化学稳定性
水解
果糖
生物物理学
生物化学
氨基酸
有机化学
酶
古生物学
生物
点击化学
作者
Pedro M. S. D. Cal,João B. Vicente,Elisabete Pires,Ana Varela Coelho,Luı́s F. Veiros,Carlos Cordeiro,Pedro M. P. Góis
摘要
Protein modification has entered the limelight of chemical and biological sciences, since, by appending small molecules into proteins surfaces, fundamental biological and biophysical processes may be studied and even modulated in a physiological context. Herein we present a new strategy to modify the lysine's ε-amino group and the protein's N-terminal, based on the formation of stable iminoboronates in aqueous media. This functionality enables the stable and complete modification of these amine groups, which can be reversible upon the addition of fructose, dopamine, or glutathione. A detailed DFT study is also presented to rationalize the observed stability toward hydrolysis of the iminoboronate constructs.
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