Chen Wentao, Dong Jiajia, Li Suhua, Liu Yu, Wang Yujia, Yoon Leonard, Wu Peng, Sharpless K Barry, Kelly Jeffery W
Department of Chemistry, The Scripps Research Institute, La Jolla, CA, 92037, USA.
Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, CA, 92037, USA.
Angew Chem Int Ed Engl. 2016 Jan 26;55(5):1835-8. doi: 10.1002/anie.201509016. Epub 2015 Dec 22.
Tyrosine O-sulfation is a common protein post-translational modification that regulates many biological processes, including leukocyte adhesion and chemotaxis. Many peptides with therapeutic potential contain one or more sulfotyrosine residues. We report a one-step synthesis for Fmoc-fluorosulfated tyrosine. An efficient Fmoc-based solid-phase peptide synthetic strategy is then introduced for incorporating the fluorosulfated tyrosine residue into peptides of interest. Standard simultaneous peptide-resin cleavage and removal of the acid-labile side-chain protecting groups affords the crude peptides containing fluorosulfated tyrosine. Basic ethylene glycol, serving both as solvent and reactant, transforms the fluorosulfated tyrosine peptides into sulfotyrosine peptides in high yield.
酪氨酸O-硫酸化是一种常见的蛋白质翻译后修饰,可调节许多生物过程,包括白细胞粘附和趋化作用。许多具有治疗潜力的肽含有一个或多个硫酸化酪氨酸残基。我们报道了一种Fmoc-氟硫酸化酪氨酸的一步合成方法。然后引入了一种基于Fmoc的高效固相肽合成策略,用于将氟硫酸化酪氨酸残基掺入目标肽中。标准的同时进行肽-树脂裂解和去除酸不稳定侧链保护基团的操作可得到含有氟硫酸化酪氨酸的粗肽。碱性乙二醇既作为溶剂又作为反应物,可将氟硫酸化酪氨酸肽高产率地转化为硫酸化酪氨酸肽。