Ahangarpour Marzieh, Kavianinia Iman, Hume Paul A, Harris Paul W R, Brimble Margaret A
School of Chemical Sciences, The University of Auckland, Auckland 1142, New Zealand.
J Am Chem Soc. 2022 Aug 3;144(30):13652-13662. doi: 10.1021/jacs.2c04146. Epub 2022 Jul 20.
Herein we report the first examples of thiol-selective heterobifunctional electrophiles, -vinyl acrylamides, that enable efficient highly selective thiol-thiol bioconjugations and cysteine modification of peptides. We demonstrate that these new classes of thiol-selective scaffolds can readily undergo a thia-Michael addition and an orthogonal radical induced thiol-ene "click" reaction under biocompatible conditions. Furthermore, the formation of an unexpected Markovnikov ,-acetal hydrothiolation was explained using computational studies. We also reveal that -methylation of the -vinyl acrylamide scaffold changes the regioselectivity of the reaction. We demonstrate that use of -vinyl acrylamides shows promise as an efficient, mild, and exquisite cysteine-selective protocol for facile construction of fluorophore-labeled peptides and proteins and that the resultant conjugates are resistant to degradation and thiol exchange, thus significantly improving their biophysical properties.
在此,我们报道了巯基选择性异双功能亲电试剂——乙烯基丙烯酰胺的首个实例,其能够实现高效的高选择性巯基-巯基生物共轭反应以及肽的半胱氨酸修饰。我们证明,这些新型巯基选择性支架在生物相容性条件下能够轻松进行硫杂迈克尔加成反应和正交自由基引发的巯基-烯“点击”反应。此外,通过计算研究解释了意外的马尔科夫尼科夫α-缩醛氢硫醇化反应的形成。我们还揭示,乙烯基丙烯酰胺支架的α-甲基化改变了反应的区域选择性。我们证明,使用乙烯基丙烯酰胺作为一种高效、温和且精确的半胱氨酸选择性方法,有望用于轻松构建荧光团标记的肽和蛋白质,并且所得共轭物对降解和巯基交换具有抗性,从而显著改善其生物物理性质。