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从 [2- (13)C]甘氨酸合成 4-硫代-[6-(13)C]赖氨酸:获得 2-氨基乙醇、2-溴乙胺和 4-硫代赖氨酸的定点同位素异构体。

Synthesis of 4-thia-[6-(13)C]lysine from [2- (13)C]glycine: access to site-directed isotopomers of 2-aminoethanol, 2-bromoethylamine and 4-thialysine.

机构信息

Department of Physics, National Dong Hwa University, Hualien, 974-01, Taiwan.

出版信息

Amino Acids. 2012 Jan;42(1):309-15. doi: 10.1007/s00726-010-0808-8. Epub 2010 Nov 20.

Abstract

4-Thialysine (S-(2-aminoethyl)-L: -cysteine) is an analog of lysine. It has been used as an alternative substrate for lysine in enzymatic reactions. Site-directed isotopomers are often needed for elucidation of mechanism of reactions. 4-Thialysine can be synthesized by reacting cysteine with 2-bromoethylamine, an important reagent in chemical-modification rescue (CMR) of proteins. Here, we present the synthesis of 4-thia-[6-(13)C]lysine, one of the isotopomers of 4-thialysine, from commercially available starting material [2-(13)C]glycine via formation of five intermediates including 2-amino[2-(13)C]ethanol and 2-bromo[1-(13)C]ethylamine. The compounds were characterized using various spectroscopic techniques. Moreover, we discuss that our strategy would provide access to site-directed isotopomers of 2-aminoethanol, 2-bromoethylamine and 4-thialysine. Biological activity of 4-thia-[6-(13)C]lysine was tested in the enzymatic reaction of lysine 5,6-aminomutase.

摘要

4-硫代赖氨酸(S-(2-氨基乙基)-L:-半胱氨酸)是赖氨酸的类似物。它已被用作赖氨酸在酶反应中的替代底物。为了阐明反应机制,通常需要定向同位素异构体。4-硫代赖氨酸可以通过半胱氨酸与 2-溴乙胺反应合成,2-溴乙胺是蛋白质化学修饰挽救(CMR)中的重要试剂。在这里,我们从商业上可获得的起始材料[2-(13)]甘氨酸出发,通过形成包括 2-氨基[2-(13)]乙醇和 2-溴[1-(13)]乙胺在内的五个中间体,合成了 4-硫代-[6-(13)]赖氨酸,4-硫代赖氨酸的一种同位素异构体。使用各种光谱技术对化合物进行了表征。此外,我们还讨论了我们的策略将为 2-氨基乙醇、2-溴乙胺和 4-硫代赖氨酸的定向同位素异构体提供途径。4-硫代-[6-(13)]赖氨酸的生物活性在赖氨酸 5,6-氨基变位酶的酶反应中进行了测试。

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