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Cyanylated Cysteine: A Covalently Attached Vibrational Probe of Protein−Lipid Contacts

机译:Cyanylated半胱氨酸:蛋白质脂质接触共价连接的振动探针。

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摘要

Cyanylated cysteine, or β-thiocyanatoalanine, is an artificial amino acid that can be introduced into peptides and proteins by post-translational chemical modification of solvent-exposed cysteine side chains, and thus it can be used in any protein with a suitable expression and mutagenesis system. In this study, cyanylated cysteine is introduced at selected sites in two model peptides that have been shown to bind to membrane interfaces: a membrane-binding sequence of the human myelin basic protein and the antimicrobial peptide CM15. Far-UV circular dichroism indicates that the secondary structures of the bound peptides are not influenced by introduction of the artificial side chain. Infrared spectra of both systems in buffer and exposed to dodecylphosphocholine micelles indicate that the CN stretching absorption band of cyanylated cysteine can clearly distinguish between membrane burial and solvent exposure of the artificial side chain. Since infrared spectroscopy can be applied in a wide variety of lipid systems, and since cyanylated cysteine can be introduced into proteins of arbitrary size via mutagenesis and post-translational modification, this new probe could see wide use in characterizing the protein−lipid interactions of membrane proteins.
机译:氰基化半胱氨酸或β-硫氰酸根丙氨酸是一种人造氨基酸,可通过对溶剂暴露的半胱氨酸侧链进行翻译后化学修饰而引入到肽和蛋白质中,因此可用于具有适当表达和诱变作用的任何蛋白质系统。在这项研究中,氰基半胱氨酸被引入两个模型肽的选定位点,这些模型肽已显示与膜界面结合:人髓磷脂碱性蛋白的膜结合序列和抗菌肽CM15。远紫外圆二色性表明,结合肽的二级结构不受人工侧链引入的影响。缓冲液中和暴露于十二烷基磷酸胆碱胶束的两个系统的红外光谱表明,氰基半胱氨酸的CN延伸吸收带可以清楚地区分膜掩埋和人工侧链的溶剂暴露。由于红外光谱技术可用于多种脂质系统,并且氰基半胱氨酸可通过诱变和翻译后修饰引入任意大小的蛋白质中,因此该新型探针可广泛用于表征膜的蛋白质-脂质相互作用蛋白质。

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