亲和配基的选择与筛选是发展新的亲和色谱填料或构建一个新的亲和色谱体系所必须解决的首要问题.该文结合作者所在实验室的工作,对配基的选择、筛选与应用方面的一些进展进行了简要评述.作者所在实验室针对特定蛋白质和多肽的多肽亲和配基的筛选,开展了反义肽简并性的研究,发展了基于反义肽的组合化学筛选新方法.与常规的组合合成法相比,该方法简单、快捷、有效,极大地减小了合成和筛选的工作量,降低了筛选后亲和组分结构鉴定的难度.所建立的筛选策略已应用于流感病毒、严重急性呼吸道综合征(SARS)病毒亲和抑制剂的筛选和用于人β-干扰素测定的石英晶体微天平(QCM)生物传感器的构建,均取得了有意义的结果.
参考文献
[1] | Hage D S,Cazes J.Handbook of Affinity Chromatography.2nd ed.Boca Raton:CRC Press,2006 |
[2] | Rudd P M,Elliott T,Cresswell P,Wilson I A,Dwek R A.Science,2001,291:2 370 |
[3] | Wu X J,Liu G Q.Biomed Chromatogr,1996,10:228 |
[4] | Liu Y,Zhao R,Shangguan D H,Zhang H W,Liu G Q.J Chromatogr B,2003,792:177 |
[5] | Zheng C,Gao R Y,Zhang Y K.Chinese Journal of Chromatography (郑超,高如瑜,张玉奎.色谱),2006,24(3):309 |
[6] | Nishino H,Huang C S,Shea K J.Angew Chem Int Edit,2006,45:2 392 |
[7] | Boss A,Bonini F,Turner A P F,Piletsky S A.Biosens Bioelectron,2007,22:1 131 |
[8] | Zhao Y X,Zhao R,Shangguan D H,Xiong S X,Liu G Q.Biomed Chromatogr,2001,15:487 |
[9] | Zhao R,Luo H,Shangguan D H,Liu G Q.J Chromatogr B,2005,816:175 |
[10] | Fassina G,Ruvo M,Palombo G,Verdoliva A,Marino M.J Biochem Bioph Meth,2001,49:481 |
[11] | Walker J M.the Protein Protocols Handbook.2nd ed.Totowa:Human Press,2002:993 |
[12] | Akesson P,Cooney J,Kishimoto F,Bjorck L.Mol Immunol,1990,27:523 |
[13] | Clarke W,Chowdhuri A R,Hage D S.Anal Chem,2001,73:2 157 |
[14] | Wiepz G J,Guadaramma A G,Fulgham D L,Bertics P J.Methods Mol Biol,2006,327:25 |
[15] | Clonis Y D.J Chromatogr A,2006,1 101:1 |
[16] | Kehoe J W,Kay B K.Chem Rev,2005,105:4056 |
[17] | Mattheakis L C,Bhatt R R,Dower W J.P Natl Acad Sci USA,1994,91:9 022 |
[18] | Gopinath S C B.Anal Bioanal Chem,2007,387:171 |
[19] | Hughten R A,Pinilla C,Blondelle S E,Blondelle S E,Appel J R,Dodey C T,Cuervo J H.Nature,1991,354:84 |
[20] | Shen B F.Molecular Library.Beijing:Science Press (沈倍奋.分子文库.北京:科学出版社),2001:156 |
[21] | Yu X.[PhD Dissertation].Beijing:Institute of Chemistry,Chinese Academy of Sciences(余晓.[博士学位论文].北京:中国科学院化学研究所),2002 |
[22] | Romig T S,Bell C,Drolet D W.J Chromatogr B,1999,731:275 |
[23] | Michaud M,Jourdan E,Villet A,Ravel A,Grosset C,Peyrin E.J Am Chem Soc,2003,125:8672 |
[24] | Shangguan D H,Li Y,Tang Z,Cao Z C,Chen H W,Mallikaratchy P,Sefah K,Yang C J,Tan W.Proc Natl Acad Sci USA,2006,103:11 838 |
[25] | Ohlson S,Shoravi S,Fex T,Isaksson R.Anal Biochem,2006,359:120 |
[26] | Liu B,Li S,Hu J.Am J Pharmacogenomics,2004,4:263 |
[27] | Ng W,Dai J R,Slon-Usakiewicz J J,Redden P R,Pasternak A,Reid N.J Biomol Screen,2007,doi:10.1177/1087057106297567 |
[28] | Touil F,Pratt S,Mutter R,Chen B N.J Pharmaceut Biomed,2006,40:822 |
[29] | Liu Y,Yu X,Zhao R,Shangguan D H,Bo Z Y,Liu G Q.Biosens Bioelectron,2003,19:9 |
[30] | Mazitsos C F,Rigden D J,Tsoungas P G,Clonis Y D.J Chromatogr A,2002,954:137 |
[31] | Feng H Q,Jia L Y,Li H L,Wang X C.Biomed Chromatogr,2006,20:1 109 |
[32] | Mekler L B.Biofizika,1969,14:581 |
[33] | Heal J R,Roberts G W,Raynes JG,Bhakoo A,Miller A D.ChemBioChem,2002,3:137 |
[34] | Zhao Z Z,Yang S M,Yang Y G,Tian X L,Su T S.Acta Polymenca Sinica(赵中璋,杨树明,杨彦果,田秀兰,苏天升.高分子学报),1999(1):31 |
[35] | Zhao R,Yu X,Liu H,Zhai L L,Xiong S X,Su T S,Liu G Q.J Chromatogr A,2001,913:421 |
[36] | Luo J,Huang Y Y,Xiong S X,Liu G Q,Zhao R.Chinese Science Bulletin(罗佳,黄嫣嫣,熊少祥,刘国诠,赵睿.科学通报),2007,52:in press |
[37] | Fang C L,Zhao R,Liu Y,Yu X,Xiong S X,Liu G Q.Chemical Journal of Chinese Universities (方灿良,赵睿,刘阳,余晓,熊少祥,刘国诠.高等学校化学学报),2003,24(1):52 |
[38] | Zhao R,Fang C L,Yu X,Liu Y,Luo J,Shangguan D H,Xiong S X,Su T S,Liu G Q.J Chromatogr A,2005,1 064:59 |
[39] | Carr C M,Kim P S.Science,1994,266:234 |
[40] | Huang Y Y,Zhao R,Luo J,Shangguan D H,Zhang H W,Xiong S X,Liu G Q,Chen Y.Front Biosci,in press |
[41] | Luo J.[PhD Dissertation].Beijing:Institute of Chemistry,Chinese Academy of Sciences(罗佳.[博士学位论文].北京:中国科学院化学研究所),2006 |
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