Biology Reference
In-Depth Information
46. Guo T, Wang W, Rudnick PA, Song T, Li J, Zhuang Z,
et al. Proteome analysis of microdissected formalin-
53. Hood L. Systems biology: integrating technology,
biology, and computation. Mech Ageing Dev 2003;
124
n-embedded tissue specimens. J His-
tochem Cytochem 2007;
fixed and paraf
(1):9 e 16.
54. Aebersold R, Cravatt BF. Proteomics d advances,
applications and the challenges that remain. Trends
Biotechnol 2002;
(7):763 e 72.
47. Wang W, Guo T, Rudnick PA, Song T, Li J, Zhuang Z,
et al. Membrane proteome analysis of microdis-
sected ovarian tumor tissues using capillary isoelectric
focusing/reversed-phase
55
(Suppl. 12):1 e 2.
55. An Y, Cooper JW, Balgley BM, Lee CS. Selective
enrichment and ultrasensitive identi
20
liquid
chromatography-
cation of trace
peptides in proteome analysis using transient capillary
isotachophoresis/zone electrophoresis coupled with
nano-ESI-MS. Electrophoresis 2006;
(3):1002 e 9.
48. Liu H, Sadygov RG, Yates JR. A model for random
sampling and estimation of relative protein abun-
dance in shotgun proteomics. Anal Chem 2004;
tandem MS. Anal Chem 2007;
79
(18):3599 e 608.
56. Fang X, Yang L, Wang W, Song T, Lee C, Devoe D, et al.
Comparison of electrokinetics-based multidimensional
separations coupledwith electrospray ionization-tandem
mass spectrometry for characterization of human sali-
vary proteins. Anal Chem 2007;
27
(14):
76
4193 e 201.
49.
Ishihama Y, Oda Y, Tabata T, Sato T, Nagasu T,
Rappsilber J, et al. Exponentially modi
ed protein
abundance index (emPAI) for estimation of absolute
protein amount in proteomics by the number of
sequenced peptides per protein. Mol Cell Proteomics
2005;
(15):5785 e 92.
57. Fang X, Wang W, Yang L, Chandrasekaran K,
Kristian T, Balgley BM, et al. Application of capillary
isotachophoresis-based multidimensional separations
coupled with electrospray ionization-tandem mass
spectrometry for characterization of mouse brain
mitochondrial proteome. Electrophoresis 2008;
79
(9):1265 e 72.
50. Balgley BM, Wang W, Song T, Fang X, Yang L, Lee CS.
Evaluation of con
4
dence and reproducibility in quan-
titative proteomics performed by a capillary isoelectric
focusing-based proteomic platform coupled with
a spectral counting approach. Electrophoresis 2008;
29
29
(10):
2215 e 23.
58. Fang X, Balgley BM, Wang W, Park DM, Lee CS.
Comparison of multidimensional shotgun technologies
targeting tissue proteomics. Electrophoresis 2009;
(14):3047 e 54.
51. Dai L, Li C, Shedden KA, Misek DE, Lubman DM.
Comparative proteomic study of two closely related
ovarian endometrioid adenocarcinoma cell lines using
cIEF fractionation and pathway analysis. Electrophoresis
2009;
30
:
4063 e 70.
59. Wolters DA, Washburn MP, Yates JR. An automated
multidimensional protein identi
cation technology for
shotgun proteomics. Anal Chem 2001;
:1119 e 31.
52. Hanrieder J, Zuberovic A, Bergquist J. Surface modi
(23):5683 e 90.
60. Jinawath N, Vasoontara C, Jinawath A, Fang X, Zhao K,
Yap K-L, et al. Oncoproteomic analysis reveals co-
upregulation of RELA and STAT5 in carboplatin
resistant ovarian carcinoma. PLoS One 2010:5.
61. Chen L-F, Greene WC. Shaping the nuclear action of
NF-kappaB. Nat Rev Mol Cell Biol 2004;
30
73
ed
capillary electrophoresis combined with in solution
isoelectric focusing and MALDI-TOF/TOF MS: a gel-
free multidimensional electrophoresis approach for
proteomic pro
ling d exempli
ed on human follicular
fluid. J Chromatogr A 2009;
:3621 e 8.
(5):392 e 401.
1216
5
Search WWH ::




Custom Search