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Regio-specific adsorption of cytochrome c on negatively charged surfaces

机译:带电表面上细胞色素c的区域特异性吸附

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Studies are reported on the identification of the chromatographic contact domain of equine cytochrome c during its interaction with negatively charged sorbents. A negatively charged resin was designed that would simultaneously adsorb the protein electrostatically and covalently bind it through amide bond formation to succinate groups coupled to the support in an ester linkage. Protein immobilization occurred through lysine residues participating in electrostatic adsorbed cytochrome c to the resin surface. After covalent bond formation in the interface between the protein and the sorbent, ester linkages coupling succinate groups to the support were hydrolyzed, and the protein was released. Lysine residues on the protein that had participated in covalent capture were labeled with succinate residues. The tagged protein was then tryptic-mapped and the peptides were examined by matrix-assisted laser desorption ionization mass spectrometry to determine the position of the amino acids that had been tagged. Comparing the tagged sites with the X-ray crystallographic structure of cytochrome c, it was concluded that a single face of the protein dominated the adsorption proces,s and the 3-D structure of the protein remained largely undisturbed during adsorption. [References: 25]
机译:研究报告了马细胞色素c与带负电荷的吸附剂相互作用过程中色谱接触区域的鉴定。设计一种带负电荷的树脂,该树脂可同时静电吸附蛋白质并通过酰胺键形成将其共价键合至与酯键连接的偶联至支持物的琥珀酸酯基团。蛋白质固定化是通过赖氨酸残基参与静电吸附细胞色素c到树脂表面而实现的。在蛋白质和吸附剂之间的界面中形成共价键后,将琥珀酸酯基团与支持物偶联的酯键被水解,蛋白质被释放。参与共价捕获的蛋白质上的赖氨酸残基用琥珀酸残基标记。然后将标记的蛋白进行胰蛋白酶消化,并通过基质辅助激光解吸电离质谱法检查肽段,以确定已标记氨基酸的位置。将标记的位点与细胞色素c的X射线晶体学结构进行比较,得出的结论是,蛋白质的单面主导了吸附过程,并且蛋白质的3-D结构在吸附过程中基本上保持不变。 [参考:25]

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