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首页> 外文期刊>Biotechnology Progress >A Metal-Chelate Affinity Reverse Micellar System for Protein Extraction
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A Metal-Chelate Affinity Reverse Micellar System for Protein Extraction

机译:金属螯合亲和反胶束系统用于蛋白质提取

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A new nonionic reverse micellar system is developed by blending two nonionic surfactants, Triton X-45 and Span 80. At total surfactant concentrations lower than 60 mmollL and molar fractions of Triton X-45 less than 0.6, thermodynamically stable reverse micelles of water content (W_0) up to 30 are formed. Di(2-ethylhexyl) phosphoric acid (HDEHP; 1-2 mmollL) is introduced into the system for chelating transition metal ions that have binding affinity for histidine-rich proteins. HDEHP exists in a dimeric form in organic solvents and a dimer associated with one transition metal ion, including copper, zinc, and nickel. The copper-chelate reverse micelles (Cu-RM) are characterized for their W_0, hydrodynamic radius (R_h), and aggregation number (N_(ag)). Similar with reverse micelles of bis-2-ethylhexyl sodium sulfosuccinate (AOT), R_h of the Cu-RM is also linearly related to W_0. However, N_(ag) is determined to be 30-90 at W_ 0 of 5-30, only quarter to half of the AOT reverse micelles. Then, selective metal-chelate extraction of histidine-rich protein (myoglobin) by the Cu-RM is successfully performed with pure and mixed protein systems (myoglobin and lysozyme). The solubilized protein can be recovered by stripping with imidazole or ethylinediaminete-traacetic acid (EDTA) solution. Because various transition metal ions can be chelated to the reverse micelles, it is convinced that the system would be useful for application in protein purification as well as simultaneous isolation and refolding of recombinant histidine-tagged proteins expressed as inclusion bodies.
机译:通过混合两种非离子表面活性剂Triton X-45和Span 80,开发了一种新的非离子反胶束体系。当表面活性剂的总浓度低于60 mmol / L,Triton X-45的摩尔分数低于0.6时,热力学稳定的反胶束水分W_0)最多可以形成30个。将二(2-乙基己基)磷酸(HDEHP; 1-2 mmollL)引入到系统中,以螯合对富含组氨酸的蛋白质具有结合亲和力的过渡金属离子。 HDEHP在有机溶剂中以二聚体形式存在,并且与一种过渡金属离子(包括铜,锌和镍)相关的二聚体存在。铜螯合物反胶束(Cu-RM)的特征在于其W_0,流体动力学半径(R_h)和聚集数(N_(ag))。与双-2-乙基己基磺基琥珀酸钠(AOT)的反胶束相似,Cu-RM的R_h也与W_0线性相关。但是,在W_0为5-30时,N_(ag)被确定为30-90,仅为AOT反胶束的四分之一到一半。然后,使用纯和混合蛋白系统(肌红蛋白和溶菌酶)成功地通过Cu-RM对富组氨酸的蛋白(肌红蛋白)进行了选择性金属螯合物萃取。可以通过用咪唑或乙二胺四乙酸(EDTA)溶液汽提来回收溶解的蛋白质。由于各种过渡金属离子可与反胶束螯合,因此确信该系统可用于蛋白质纯化以及同时分离和重折叠表达为包涵体的重组组氨酸标签蛋白质。

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