GELS MIMICKING ANTIBODIES IN THEIR SELECTIVE RECOGNITION OF PROTEINS

文献类型: 外文期刊

第一作者: Hjerten, S

作者: Hjerten, S;Liao, JL;Nakazato, K;Wang, Y;Zamaratskaia, G;Zhang, HX

作者机构:

关键词: Affinity chromatography;Entrapment;Molecular imprinting and recognition;Proteins;Selectivity and specificity;Hydrophobic interaction chromatography;Divinyl sulfone;Agarose;Polymers;Purification;Derivatives;Gradient;Silica

期刊名称:CHROMATOGRAPHIA ( 影响因子:2.044; 五年影响因子:1.725 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: In a previous paper we presented preliminary experiments aimed at the preparation of gel particles with the property to recognize selectively some particular protein (hemoglobin, cytochrome C, transferrin) [1]. Using the same method we show in this article that human growth hormone, ribonuclease and myoglobin from horse can also be adsorbed specifically, indicating that the method may be universal or at least applicable to a great number of proteins. A gel with specific adsorption of three model proteins was synthesized in order to demonstrate that the beds can be employed to remove (traces of) several proteins contaminating a sample (''negative purification''). The degree of selective recognition is high, to judge from the fact that myoglobin from horse, but not that from whale, was adsorbed onto a column designed to bind specifically the former protein. This selectivity is noteworthy since these two proteins have similar amino acid sequences and 3-D structures. The method for the synthesis of the specific gels involves polymerization of appropriate monomers (for instance acrylamide and its derivatives) in the presence of the protein to be adsorbed specifically, granulation of the gel formed, packing a column with the gel particles, washing the column to remove the protein and finally application of the sample for selective adsorption of the protein. The approach resembles that used for entrapment (immobilization) of proteins for affinity chromatography and that for molecular imprinting, with the distinct difference that the monomer composition is quite different and thereby the binding mechanism. This mechanism is discussed, for instance, in terms of (I) a new classification system for chromatographic beds based on the number of bonds between the solute and the matrix and the strength of each bond and (2) ''non-specific bonds'' (these bonds are often harmful in conventional chromatography, but we have used them to advantage). In this classification system the selective recognition is characterized by a large number of weak bonds. Therefore, so-called functional monomers are not used for the preparation of the gels because they often are charged and; accordingly, give rise to strong electrostatic interactions, i.e. the beds behave to some extent as ion-exchangers. In most experiments we have used a polyacrylamide gel with large pores to facilitate diffusion of proteins into and out of the gel granules. When used in chromatography these soft gels (which can be used repeatedly) allow only rather low flow rates. This problem can be overcome by a new approach to prepare the granules. Potential applications of the selective beds are discussed, as well as future improvements. [References: 26]

分类号: O65

  • 相关文献

[1]Fusion expression of bovine lactoferricin in Escherichia coli. Feng, Xing-jun,Wang, Jian-hua,Shan, An-shan,Teng, Da,Yang, Ya-lin,Yao, Yi,Yang, Guan-pin,Shao, Yan-chun,Liu, Shuo,Zhang, Fan.

[2]Expression and characterization of recombinant gallinacin-9 and gallinacin-8 in Escherichia coli. Ma, De-ying,Shan, An-shan,Liu, Sheng-wang,Han, Zong-xi,Li, Yi-jin.

[3]Multimerization and fusion expression of bovine lactoferricin derivative LfcinB15-W4,10 in Escherichia coli. Tian, Zi-gang,Da Teng,Yang, Ya-lin,Luo, Jin,Feng, Xing-jun,Fan, Ying,Zhang, Fan,Wang, Jian-hua.

[4]High level expression of a recombinant acid phytase gene in Pichia pastoris. Xiong, AS,Yao, QH,Peng, RH,Han, PL,Cheng, ZM,Li, Y.

[5]Development of a sensitive monoclonal antibody-based enzyme-linked immunosorbent assay for the antimalaria active ingredient artemisinin in the Chinese herb Artemisia annua L.. He, Su-Ping,Tan, Gui-Yu,Tan, Wei-Ming,Nan, Tie-Gui,Wang, Bao-Min,Li, Zhao-Hu,Li, Gang,Li, Qing X..

[6]Solanesol: a review of its resources, derivatives, bioactivities, medicinal applications, and biosynthesis. Yan, Ning,Liu, Yanhua,Gong, Daping,Du, Yongmei,Zhang, Huaibao,Zhang, Zhongfeng. 2015

[7]Construction of Agropyron Gaertn. genetic linkage maps using a wheat 660K SNP array reveals a homoeologous relationship with the wheat genome. Zhou, Shenghui,Zhang, Jinpeng,Liu, Weihua,Lu, Yuqing,Yang, Xinming,Li, Xiuquan,Jia, Jizeng,Liu, Xu,Li, Lihui,Che, Yonghe. 2018

[8]Diffusion characteristics of agarose hydrogel used in diffusive gradients in thin films for measurements of cations and anions. Wang, Yan,Ding, Shiming,Gong, Mengdan,Xu, Shiwei,Xu, Weimin,Zhang, Chaosheng.

[9]Rapid method for detecting SNPs on agarose gels and its application in candidate gene mapping. Raghavan, Chitra,Naredo, Ma. Elizabeth B.,Wang, Hehe,Atienza, Genelou,Liu, Bin,Qiu, Fulin,McNally, Kenneth L.,Leung, Hei.

[10]High level expression human chemokine receptor CCR-5 in fission yeast. Chen, Xuqing,Hu, Zongli,Yang, Yuxin,Pan, Yu,Zhang, Ning,Chen, Guoping,Chen, Xuqing. 2011

[11]Separate recombinant antibacterial peptide with immobilized metal-chelated affinity chromatography membranes.. Wei, Q,Yao, RH,Bao, SX. 2000

[12]Affinity chromatography revealed insights into unique functionality of two 14-3-3 protein species in developing maize kernels. Liu, Xiangguo,Yin, Yuejia,Han, Siping,Liu, Yang,Hao, Dongyun,Dou, Yao,Hao, Dongyun,Lu, Yang.

[13]Improving transparency of incompatible polymer blends by reactive compatibilization. Zhang, Weiyang,Lu, Chong,Cheng, Shujun,Gao, Yun,Gui, Zongyan,Cai, Dianxiong.

[14]Electrically conductive graphene-filled polymer composites with well organized three-dimensional microstructure. Zhao, Pengfei,Yang, Junlong,Yang, Qi,Zhao, Pengfei,Luo, Yongyue,He, Dongning,Zheng, Peng,Kong, Lingxue,Zheng, Peng.

[15]A novel thermal iniferter for radical polymerization. Chen, XP,Qiu, KY,Swift, G,Westmoreland, DG,Wu, SQ.

[16]Preparation of low cost superabsorbent hydrogel by urea and acrylic acid. Cheng, Dongdong,Liu, Yan,Yang, Guiting,Cheng, Dongdong,Hao, Guixi,Wang, Yulong,Zhang, Aiping. 2017

[17]Non-thermal plasma assisted polymer surface modification and synthesis: A review. Cheng Yanling,Cheng Yanling,Chen, Paul,Deng, Shaobo,Ruan, Roger,Wang Yingkuan. 2014

[18]Radiation chemistry of molecular compounds and polymers by soft X-ray spectroscopy and microscopy. Yang, Jianjun,Wang, Jian. 2017

[19]Luminescent and thermal properties of a novel red-emitting silicon fluoride acrylate-Eu(III) copolymer for white LEDs. Hu, Jun,Xu, Lin,Xie, Hongde,Xu, Lei,Tsuboi, Taiju,Huang, Wei,Tsuboi, Taiju,Huang, Wei. 2014

[20]A thermal degradation mechanism of polyvinyl alcohol/silica nanocomposites. Peng, Zheng,Kong, Ling Xue.

作者其他论文 更多>>