Comparison of two-dimensional fractionation techniques for shotgun proteomics

被引:98
作者
Dowell, James A.
Frost, Dustin C.
Zhang, Jiang
Li, Lingjun [1 ]
机构
[1] Univ Wisconsin, Sch Pharm, Madison, WI 53705 USA
基金
美国国家卫生研究院;
关键词
D O I
10.1021/ac8007994
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Two-dimensional (2D) fractionation is a commonly used tool to increase dynamic range and proteome coverage for bottom-up, shotgun proteomics. However, there are few reports comparing the relative separation efficiencies of 2D methodologies using low-microgram sample quantities. In order to systematically evaluate 2D separation techniques, we fractionated microgram quantities of E. coli protein extract by seven different methods. The first dimension of separation was performed with either reversed-phase high-pressure liquid chromatography (RP-HPLC), gel electrophoresis (SDS-PAGE), or strong cation exchange (SCX-HPLC). The second dimension consisted of a standard reversed-phase capillary HPLC coupled to an electrospray ionization quadrupole time-of-flight mass spectrometer for tandem mass spectrometric analysis. The overall performance and relative fractionation efficiencies of each technique were assessed by comparing the total number of proteins identified by each method. The protein-level RP-HPLC and the high-pH RP-HPLC peptide-level separations performed the best, identifying 281 and 266 proteins, respectively. The online pH variance SCX and the SDS-PAGE returned modest performances with 178 and 139 proteins identified, respectively. The offline SCX had the worst performance with 81 proteins identified. We also examined various chromatographic factors that contribute to separation efficiency, including resolving power, orthogonality, and sample loss.
引用
收藏
页码:6715 / 6723
页数:9
相关论文
共 50 条
[1]   Large-scale characterization of HeLa cell nuclear phosphoproteins [J].
Beausoleil, SA ;
Jedrychowski, M ;
Schwartz, D ;
Elias, JE ;
Villén, J ;
Li, JX ;
Cohn, MA ;
Cantley, LC ;
Gygi, SP .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (33) :12130-12135
[2]  
Butt A, 2001, PROTEOMICS, V1, P42, DOI 10.1002/1615-9861(200101)1:1<42::AID-PROT42>3.3.CO
[3]  
2-A
[4]   Immobilized pH gradients as a first dimension in shotgun proteomics and analysis of the accuracy of pI predictability of peptides [J].
Cargile, BJ ;
Talley, DL ;
Stephenson, JL .
ELECTROPHORESIS, 2004, 25 (06) :936-945
[5]   Capillary isoelectric focusing-based multidimensional concentration/separation platform for proteome analysis [J].
Chen, JZ ;
Balgley, BM ;
DeVoe, DL ;
Lee, CS .
ANALYTICAL CHEMISTRY, 2003, 75 (13) :3145-3152
[6]   MOBILE-PHASE AND TEMPERATURE EFFECTS IN THE REVERSED PHASE CHROMATOGRAPHIC-SEPARATION OF PROTEINS [J].
COHEN, KA ;
SCHELLENBERG, K ;
BENEDEK, K ;
KARGER, BL ;
GREGO, B ;
HEARN, MTW .
ANALYTICAL BIOCHEMISTRY, 1984, 140 (01) :223-235
[7]   CONFORMATIONAL EFFECTS IN THE REVERSED-PHASE LIQUID-CHROMATOGRAPHY OF RIBONUCLEASE-A [J].
COHEN, SA ;
BENEDEK, K ;
TAPUHI, Y ;
FORD, JC ;
KARGER, BL .
ANALYTICAL BIOCHEMISTRY, 1985, 144 (01) :275-284
[8]   Proteomic analysis with integrated multiple dimensional liquid chromatography/mass spectrometry based on elution of ion exchange column using pH steps [J].
Dai, J ;
Shieh, CH ;
Sheng, QH ;
Zhou, H ;
Zeng, R .
ANALYTICAL CHEMISTRY, 2005, 77 (18) :5793-5799
[9]   Two-dimensional reversed-phase x ion-pair reversed-phase HPLC: An alternative approach to high-resolution peptide separation for shotgun proteome analysis [J].
Delmotte, Nathanael ;
Lasaosa, Maria ;
Tholey, Andreas ;
Heinzle, Ehnar ;
Huber, Christian G. .
JOURNAL OF PROTEOME RESEARCH, 2007, 6 (11) :4363-4373
[10]   Improved protein recovery in reversed-phase liquid chromatography by the use of ultrahigh pressures [J].
Eschelbach, JW ;
Jorgenson, JW .
ANALYTICAL CHEMISTRY, 2006, 78 (05) :1697-1706