Integration of capillary isoelectric focusing with capillary reversed-phase liquid chromatography for two-dimensional proteomics separation

被引:1
|
作者
Chen, JZ
Lee, CS [1 ]
Shen, YF
Smith, RD
Baehrecke, EH
机构
[1] Univ Maryland, Dept Chem & Biochem, College Pk, MD 20742 USA
[2] Pacific NW Natl Lab, Environm Mol Sci Lab, Richland, WA USA
[3] Univ Maryland, Ctr Agr Biotechnol, Inst Biotechnol, College Pk, MD 20742 USA
关键词
capillary isoelectric focusing; capillary reversed-phase liquid chromatography; proteomics separation;
D O I
10.1002/1522-2683(200209)23:18<3143::AID-ELPS3143>3.0.CO;2-7
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
On-line combination of capillary isoelectric focusing (CIEF) with capillary reversed-phase liquid chromatography (CRPLC) is developed using a microinjector as the interface for performing two-dimensional (2-D) protein/peptide separations of complex protein mixtures. The focusing effect of CIEF not only contributes to a high-resolution protein/peptide separation, but also may permit the analysis of low-abundance proteins with a typical concentration factor of 50-100 times. The preparative capabilities of CIEF are much larger than most of capillary-based electrokinetic separation techniques since the entire capillary is initially filled with a solution containing proteins/peptides and carrier ampholytes for the creation of a pH gradient inside the capillary. The focused peptides which have a similar pl are coinjected into the second separation dimension and further resolved by their differences in hydrophobicity. The resolving power of combined CIEF-CRPLC system is demonstrated using the soluble fraction of Drosophila salivary glands taken from a period beginning before steroid-triggered programmed cell death and extending to its completion. The separation mechanisms of CIEF and CRPLC are completely orthogonal and the overall peak capacity is estimated to be around similar to1800 over a run time of less than 8 h. Significant enhancement in the separation peak capacity can be realized by further increasing the number of CIEF fractions and/or slowing the solvent gradient in CRPLC, however, at the expense of overall analysis time. The results of our preliminary studies display significant differences in the separation profiles of peptide samples obtained from salivary glands of animals staged at the 6 and 12 h following puparium formation.
引用
收藏
页码:3143 / 3148
页数:6
相关论文
共 50 条
  • [31] Study of triacontyl-functionalized monolithic silica capillary column for reversed-phase capillary liquid chromatography
    Chen, Yashun
    Chen, Jie
    Jia, Li
    JOURNAL OF CHROMATOGRAPHY A, 2009, 1216 (12) : 2597 - 2600
  • [32] Chip-Capillary Hybrid Device for Automated Transfer of Sample Preseparated by Capillary Isoelectric Focusing to Parallel Capillary Gel Electrophoresis for Two-Dimensional Protein Separation
    Lu, Joann J.
    Wang, Shili
    Li, Guanbin
    Wang, Wei
    Pu, Qiaosheng
    Liu, Shaorong
    ANALYTICAL CHEMISTRY, 2012, 84 (16) : 7001 - 7007
  • [33] Two-dimensional capillary liquid chromatography based on microfractionation
    Vissers, JPC
    van Soest, REJ
    Chervet, JP
    Cramers, CA
    JOURNAL OF MICROCOLUMN SEPARATIONS, 1999, 11 (04) : 277 - 286
  • [34] Capillary isoelectric focusing coupled with dynamic imaging detection: A one-dimensional separation for two-dimensional protein characterization
    Liu, Z
    Lemma, T
    Pawliszyn, J
    JOURNAL OF PROTEOME RESEARCH, 2006, 5 (05) : 1246 - 1251
  • [35] Two-dimensional capillary liquid chromatography based on microfractionation
    Vissers, Johannes P. C.
    Van, Soest, Remco E. J.
    Chervet, Jean-Pierre
    Cramers, Carel A.
    Journal of Microcolumn Separations, 11 (04): : 277 - 286
  • [36] Two-dimensional separation system of coupling capillary liquid chromatography to capillary electrophoresis for analysis of Escherichia coli metabolites
    Jia, L
    Tanaka, N
    Terabe, S
    ELECTROPHORESIS, 2005, 26 (18) : 3468 - 3478
  • [37] Elevated temperature liquid chromatography using reversed-phase packed capillary columns
    Sheng, GC
    Shen, YF
    Lee, ML
    JOURNAL OF MICROCOLUMN SEPARATIONS, 1997, 9 (02) : 63 - 72
  • [38] Determination of retinoids by reversed-phase capillary liquid chromatography with amperometric electrochemical detection
    Hagen, JJ
    Washco, KA
    Monnig, CA
    JOURNAL OF CHROMATOGRAPHY B-BIOMEDICAL APPLICATIONS, 1996, 677 (02): : 225 - 231
  • [39] Separation of basic solutes by reversed-phase capillary electrochromatography
    Dittmann, MM
    Masuch, K
    Rozing, GP
    JOURNAL OF CHROMATOGRAPHY A, 2000, 887 (1-2) : 209 - 221
  • [40] The development of reversed-phase capillary electrochromatography for the separation of steroids
    Wei, GT
    Hsu, CF
    Liu, FK
    Chou, FM
    JOURNAL OF THE CHINESE CHEMICAL SOCIETY, 2005, 52 (04) : 741 - 751