三氟乙酸
化学
硫
烷基化
劈理(地质)
蛋氨酸亚砜
肽
氨基酸
组合化学
有机化学
醋酸
磷化氢
蛋氨酸
盐(化学)
催化作用
生物化学
岩土工程
断裂(地质)
工程类
作者
K. P. Nandhini,Mahama Alhassan,Clinton G. L. Veale,Fernando Alberício,Beatriz G. de la Torre
出处
期刊:ACS omega
[American Chemical Society]
日期:2023-04-20
卷期号:8 (17): 15631-15637
被引量:10
标识
DOI:10.1021/acsomega.3c01058
摘要
[Image: see text] The solid-phase synthesis of Met-containing peptides using a fluorenylmethoxycarbonyl (Fmoc)/tert-butyl (tBu) protection scheme is inevitably accompanied by two stubborn side reactions, namely, oxidation and S-alkylation (tert-butylation), which result in the formation of Met(O) and sulfonium salt impurities of the target peptide, respectively. These two reactions are acid-catalyzed, and they occur during the final trifluoroacetic (TFA)-based acidolytic cleavage step. Herein, we developed two new cleavage solutions that eradicate the oxidation and reduce S-alkylation. TFA-anisole-trimethylsilyl chloride (TMSCl)-Me(2)S-triisopropylsilane (TIS) containing 1 mg of triphenyl phosphine per mL of solution was the optimal mixture for Cys-containing peptides, while for the remaining peptides, TIS was not required. Both cleavage solutions proved to be excellent when sensitive amino acids such as Cys and Trp were involved. TMSCl did not affect either of these sensitive amino acids. Reversing the sulfonium salt to free Met-containing peptide was achieved by heating the peptide at 40 °C for 24 h using 5% acetic acid.
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