Element-coded affinity tags for peptides and proteins

被引:96
作者
Whetstone, PA [1 ]
Butlin, NG [1 ]
Corneillie, TM [1 ]
Meares, CF [1 ]
机构
[1] Univ Calif Davis, Dept Chem, Davis, CA 95616 USA
关键词
D O I
10.1021/bc034150l
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Isotope-coded affinity tags (ICAT) represent an important new tool for the analysis of complex mixtures of proteins in living systems [Aebersold, R., and Mann, M. (2003) Nature, 422, 198-207]. We envisage an alternative protein-labeling technique based on tagging with different element-coded metal chelates, which affords affinity chromatography, quantification, and identification of a tagged peptide from a complex mixture. As proof of concept, a synthetic peptide was modified at a cysteine side chain with either a carboxymethyl group or acetamidobenzyl-1,4,7,10-tetraazacyclododecane-N,N'N",N''',Y"-tetraacetic acid (AcBD) chelates of terbium or yttrium. A mixture of the three modified peptides in a mole ratio of 100: 1.0:0.83 carboxymethyl:AcBD-Tb:AcBD-Y was trypsinized, purified on a new affinity column that binds rare-earth DOTA chelates, and analyzed by LC-MS/MS. Chelate-tagged tryptic peptides eluted cleanly from the affinity column; the tagged peptides chromatographically coeluted during LC-MS analysis, were present in the expected ratio as indicated by MS ion intensity, and were sequence-identified by tandem mass spectrometry. DOTA-rare earth chelates have exceptional properties for use as affinity tags. They are highly polar and water-soluble. Many of the rare earth elements are naturally monoisotopic, providing a variety of simple choices for preparing mass tags. Further, the rare earths are heavy elements, whose mass defects give the masses of tagged peptides exact values not normally shared by molecules that contain only light elements.
引用
收藏
页码:3 / 6
页数:4
相关论文
共 27 条
[1]   Mass spectrometry-based proteomics [J].
Aebersold, R ;
Mann, M .
NATURE, 2003, 422 (6928) :198-207
[2]  
CHAPMAN JR, 2000, METHOD MOL BIOL, V146, P1
[3]   Quantitative analysis of bacterial and mammalian proteomes using a combination of cysteine affinity tags and 15N-Metabolic labeling [J].
Conrads, TP ;
Alving, K ;
Veenstra, TD ;
Belov, ME ;
Anderson, GA ;
Anderson, DJ ;
Lipton, MS ;
Pasa-Tolic, L ;
Udseth, HR ;
Chrisler, WB ;
Thrall, BD ;
Smith, RD .
ANALYTICAL CHEMISTRY, 2001, 73 (09) :2132-2139
[4]   Utility of accurate mass tags for proteome-wide protein identification [J].
Conrads, TP ;
Anderson, GA ;
Veenstra, TD ;
Pasa-Tolic, L ;
Smith, RD .
ANALYTICAL CHEMISTRY, 2000, 72 (14) :3349-3354
[5]   A rare earth-DOTA-binding antibody: Probe properties and binding affinity across the lanthanide series [J].
Corneillie, TM ;
Whetstone, PA ;
Fisher, AJ ;
Meares, CF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (12) :3436-3437
[6]   Advances in quantitative proteomics using stable isotope tags [J].
Flory, MR ;
Griffin, TJ ;
Martin, D ;
Aebersold, R .
TRENDS IN BIOTECHNOLOGY, 2002, 20 (12) :S23-S29
[7]   Differential stable isotope labeling of peptides for quantitation and de novo sequence derivation [J].
Goodlett, DR ;
Keller, A ;
Watts, JD ;
Newitt, R ;
Yi, EC ;
Purvine, S ;
Eng, JK ;
von Haller, P ;
Aebersold, R ;
Kolker, E .
RAPID COMMUNICATIONS IN MASS SPECTROMETRY, 2001, 15 (14) :1214-1221
[8]   Phosphoprotein isotope-coded affinity tag approach for isolating and quantitating phosphopeptides in proteome-wide analyses [J].
Goshe, MB ;
Conrads, TP ;
Panisko, EA ;
Angell, NH ;
Veenstra, TD ;
Smith, RD .
ANALYTICAL CHEMISTRY, 2001, 73 (11) :2578-2586
[9]   Phosphoprotein isotope-coded affinity tags: Application to the enrichment and identification of low-abundance phosphoproteins [J].
Goshe, MB ;
Veenstra, TD ;
Panisko, EA ;
Conrads, TP ;
Angell, NH ;
Smith, RD .
ANALYTICAL CHEMISTRY, 2002, 74 (03) :607-616
[10]   Proteome analysis of low-abundance proteins using multidimensional chromatography and isotope-coded affinity tags [J].
Gygi, SP ;
Rist, B ;
Griffin, TJ ;
Eng, J ;
Aebersold, R .
JOURNAL OF PROTEOME RESEARCH, 2002, 1 (01) :47-54