Contains      

UniProtKB-P10909

Protein Clusterin
Gene CLU
Status Reviewed
Source 22Rv1 cell line (prostate cancer); Bladder tumor; Breast Cancer cell lines; Breast cancer cell lines; Breast cancer xenografts; Breast cell lines; Breast tumor; Cerebrospinal fluid; Colorectal cancer cell line, HCT-116 (colorectal cancer); Colorectal tumor; HCC cell lines (Liver); HCCLM3 cell line (Liver); HEK293 cell line (embryonic kidney); HEK293T cell line (embryonic kidney), HEK293T cell line (embryonic kidney); Hela cell line (cervical cancer); HepG2 cell line (Liver); HuH-7 cell line (Liver); IGROV-1/CP cell line (Ovarian cancer)IGROV-1/CP; LNCap/PC3 cell lines (Prostate cancer); Liver; Liver tumor (HCC); LnCap cell line (Prostate cancer); Non-small Cell Lung Carcinoma; OVCAR-3 cell line (Ovarian cancer); Ovarian cancer cell lines; Ovarian tumor; Pancreatic islets; Plasma; Platelet; Platelet Plasma membranes; Prostate; Prostate cancer metastasis to liver; Prostate tumor; Serum; Serum (Colorectal cancer); Serum (HCC); Spermatozoa; Urine; XTC-1 Cell Line (Thyroid Cance); lung; milk; ovarian tumor; plasma
Years 2003-20072007

Glycosites

Site Identified Peptides Year(Publication ID)
86 DALnETR 2014(33);
86 EDALnETR 2005( 81); 2007(71); 2007(73); 2007(74); 2007(75); 2007(66); 2009(54); 2011(55); 2011(3); 2012(48); 2012(50); 2012(53); 2012(34); 2013(34); 2013(39); 2013(40); 2013(45); 2013(45); 2013(13); 2014(21); 2014(22); 2014(27); 2014(31); 2014(33); 2014(2); 2015(7); 2015(8); 2015(10); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2007(unpublished);2007;2007;2007;2007;2007;2007;
86 KKEDALnE 2014(33);
86 EDALnETRE 2014(33);
86 KEDALnETR 2007(71); 2009(64); 2012(48); 2012(50); 2012(53); 2013(45); 2013(45); 2014(13); 2014(22); 2014(33); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(7);
86 KKEDALnET 2012(48);
86 nETRESETK 2015(1);
86 KEDALnETRE 2014(33);
86 KKEDAInETR 2014(32);
86 KKEDALnETR 2007(75); 2009(64); 2009(66); 2012(48); 2012(53); 2013(34); 2013(34); 2013(38); 2013(42); 2014(13); 2014(21); 2014(28); 2014(31); 2014(33); 2015(unpublished);2015(2); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(11);
86 KKEDALnETRE 2014(33);
86 KKKEDALnETR 2007(75); 2014(33);
86 EDALnETRESET 2014(14); 2015(unpublished);
86 EDALnETRESETK 2008(69); 2012(48); 2012(53); 2013(34); 2013(38); 2013(38); 2013(38); 2013(38); 2013(42); 2014(13); 2014(14); 2014(18); 2014(21); 2014(33); 2015(unpublished);2015(unpublished);2015(2); 2015(unpublished);2015(unpublished);
86 KKEDAInETRESE 2013(37);
86 KEDALnETRESETK 2012(53); 2013(34); 2013(38); 2013(38); 2013(38); 2013(38); 2014(14); 2014(18); 2014(33); 2015(unpublished);2015(unpublished);2015(unpublished);
86 EDALnETRESETKLK 2013(38);
86 KKEDALnETRESETK 2007(75); 2014(33);
86 LSNLEEAKKKKEDALnETRESETKL 2014(33);
103 ELPGVCnE 2014(33);
103 LKELPGVCnE 2014(33);
103 ELPGVCnETMM 2012(3); 2012(48); 2014(33); 2015(unpublished);
103 KELPGVCnETM 2014(33);
103 LKELPGVCnET 2009(64);
103 ELPGVCnETMMA 2012(48);
103 KELPGVCnETMM 2014(33);
103 TKLKELPGVCnE 2013(42);
103 EIPGVCnETMMAI 2013(37);
103 ELPGVCnETMMAL 2014(33);
103 LKELPGVCnETMM 2012(48);
103 ELPGVCnETMMALW 2014(33);
103 KELPGVCnETMMAL 2014(33);
103 LKELPGVCnETMMA 2012(48);
103 KELPGVCnETMMALW 2014(33);
103 LKELPGVCnETMMAL 2014(33);
103 CnETMMALWEECKPCLK 2012(48);
103 ELPGVCnETMMALWEECK 2012(48); 2013(38); 2013(38);
103 ELPGVCnETMMALWEECKPC 2012(48); 2015(unpublished);
103 ESETKLKELPGVCnETMMAL 2014(24);
103 PGVCnETMMALWEECKPCLK 2012(48);
103 LPGVCnETMMALWEECKPCLK 2012(48);
103 ELPGVCnETMMALWEECKPCLK 2005( 81); 2007(69); 2008(63); 2009(60); 2010(48); 2012(51); 2012(53); 2012(38); 2013(38); 2013(38); 2013(38); 2013(45); 2013(13); 2014(35); 2014(18); 2014(20); 2014(24); 2014(26); 2014(33); 2014(5); 2015(8); 2015(10); 2015(12); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2007(UnpublishedUnpublished ); 2007;2007;2007;2007;2007;2007;20072007 ;
103 LKELPGVCnETMMALWEECKPCL 2012(48);
103 IKEIPGVCnETMMAIWEECKPCIK 2013(43); 2014(32); 2014(32);
103 LKELPGVCnETMMALWEECKPCLK 2011(58); 2012(48); 2012(53); 2013(38); 2013(38); 2013(38); 2013(42); 2013(45); 2013(45); 2014(13); 2014(35); 2014(18); 2014(33); 2015(unpublished);2015(unpublished);2015(unpublished);2015(8); 2015(11); 2015(12);
145 FLnQSSPF 2014(33);
145 QLEEFLnQ 2014(33);
145 EFLnQSSPF 2014(33);
145 FLnQSSPFY 2009(64); 2014(33);
145 QLEEFLnQS 2014(33);
145 FLnQSSPFYF 2014(33);
145 LEEFLnQSSP 2009(64);
145 QLEEFLnQSSP 2014(33);
145 VGRQLEEFLnQ 2014(33);
145 QLEEFLnQSSPF 2010(60); 2011(54); 2014(19); 2014(21); 2014(27); 2014(28); 2014(33);
145 QIEEFInQSSPFY 2013(37);
145 QLEEFLnQSSPFY 2014(33);
145 RQLEEFLnQSSPF 2014(33);
145 QLEEFLnQSSPFYF 2014(14); 2015(unpublished);
145 VGRQLEEFLnQSSPF 2014(33);
145 FLnQSSPFYFWMNGDR 2014(33);
145 VGRQLEEFLnQSSPFY 2014(33);
145 SGLVGRQLEEFLnQSSPF 2014(33);
145 LEEFLnQSSPFYFWMNGDR 2015(8);
145 QIEEFInQSSPFYFWMNGDR 2014(32);
145 QLEEFLnQSSPFYFWMNGDR 2005( 81); 2007(59); 2010(40); 2010(58); 2011(52); 2012(53); 2012(40); 2013(42); 2013(45); 2013(45); 2013(13); 2014(35); 2014(24); 2014(33); 2014(1); 2015(8); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015;2007;2007;2007;2007;2007;2007;2007;
145 SGSGLVGRQLEEFLnQSSPF 2014(33);
145 RSGSGLVGRQLEEFLnQSSPF 2014(33);
145 FLnQSSPFYFWMNGDRIDSLLENDR 2014(33);
145 QIEEFInQSSPFYFWMNGDRIDSIIENDR 2014(32); 2014(32);
145 QLEEFLnQSSPFYFWMNGDRIDSLLENDR 2012(53); 2013(38); 2013(45); 2014(35); 2014(33); 2015(unpublished);2015(unpublished);
145 SGSGLVGRQLEEFLnQSSPFYFWMNGDRIDSLLENDR 2013(38);
291 nSTGCLR 2015(1);
291 HnSTGCLR 2005( 81); 2007(71); 2007(70); 2008(3); 2012(48); 2012(50); 2012(53); 2012(34); 2013(38); 2013(40); 2013(17); 2014(21); 2014(22); 2014(33); 2014(8); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015;2007;2007;2007;2007;2007;2007;2007;
291 EIRHnSTGCL 2014(33);
291 IRHnSTGCLR 2014(33);
291 EIRHnSTGCLR 2011(58); 2012(48); 2013(34); 2013(38); 2013(38); 2013(38); 2013(38); 2014(14); 2014(18); 2014(21); 2014(33); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(12);
291 REIRHnSTGCL 2014(33);
291 TVCREIRHnSTGCLR 2013(38);
291 IREGDDDRTVCREIRHnSTGCL 2014(33);
354 KMLnTSSL 2014(33);
354 KMLnTSSLL 2014(33);
354 MLnTSSLLE 2014(33);
354 MLnTSSLLEQL 2012(3); 2012(48); 2014(14); 2014(33); 2015(unpublished);
354 QWKMLnTSSLL 2014(33);
354 MLnTSSLLEQLNE 2014(33);
354 YQWKMInTSSIIE 2013(37);
354 MLnTSSLLEQLNEQF 2014(28); 2014(33);
354 KMLnTSSLLEQLNEQF 2014(33);
354 MLnTSSLLEQLNEQFN 2014(33);
354 QWKMLnTSSLLEQLNEQF 2014(33);
354 LnTSSLLEQLNEQFNWVSR 2015(unpublished);
354 MInTSSIIEQINEQFNWVSR 2013(43); 2014(32); 2014(32);
354 MLnTSSLLEQLNEQFNWVSR 2003( 83); 2005(79); 2005(80); 2005(81); 2007(71); 2007(75); 2007(62); 2009(63); 2009(64); 2009(59); 2010(60); 2010(40); 2010(58); 2011(52); 2012(53); 2012(38); 2013(38); 2013(38); 2013(38); 2013(40); 2013(42); 2013(45); 2013(45); 2013(13); 2014(35); 2014(15); 2014(17); 2014(18); 2014(24); 2014(31); 2014(33); 2014(1); 2015(2); 2015(5); 2015(8); 2015(9); 2015(10); 2015(11); 2015(12); 2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2015(unpublished);2007;2007;2007;2007;2007;2007;2007;2007;
354 SYQWKMLnTSSLLEQLNEQFNWVSR 2015(unpublished);
354 MLnTSSLLEQLNEQFNWVSRLANLTQGEDQYYLR 2013(38); 2013(38); 2013(38);
374 LAnLTQGE 2014(33);
374 AnLTQGEDQY 2014(33);
374 LAnLTQGEDQ 2014(14); 2014(33); 2015(unpublished);
374 AnLTQGEDQYY 2014(33);

Sequence

1112131415161718191
MMKTLLLFVGLLLTWESGQVLGDQTVSDNELQEMSNQGSKYVNKEIQNAVNGVKQIKTLIEKTNEERKTLLSNLEEAKKKKEDALNETRESETKLKELPG
101111121131141151161171181191
VCNETMMALWEECKPCLKQTCMKFYARVCRSGSGLVGRQLEEFLNQSSPFYFWMNGDRIDSLLENDRQQTHMLDVMQDHFSRASSIIDELFQDRFFTREP
201211221231241251261271281291
QDTYHYLPFSLPHRRPHFFFPKSRIVRSLMPFSPYEPLNFHAMFQPFLEMIHEAQQAMDIHFHSPAFQHPPTEFIREGDDDRTVCREIRHNSTGCLRMKD
301311321331341351361371381391
QCDKCREILSVDCSTNNPSQAKLRRELDESLQVAERLTRKYNELLKSYQWKMLNTSSLLEQLNEQFNWVSRLANLTQGEDQYYLRVTTVASHTSDSDVPS
401411421431441
GVTEVVVKLFDSDPITVTVPVEVSRKNPKFMETVAEKALQEYRKKHREE

Reference

ID Publication
1Sun S, Shah P, Eshghi ST, Yang W, Trikannad N, Yang S, Chen L, Aiyetan P, Hoti N, Zhang Z, et al: Comprehensive analysis of protein glycosylation by solid-phase extraction of N-linked glycans and glycosite-containing peptides. Nat Biotech 2015, advance online publication.
2Shah P, Wang X, Yang W, Eshghi ST, Sun S, Hoti N, Chen L, Yang S, Pasay J, Rubin A: Integrated Proteomic and Glycoproteomic Analyses of Prostate Cancer Cells Reveal Glycoprotein Alteration in Protein Abundance and Glycosylation. Molecular & Cellular Proteomics 2015, 14:2753-2763.
3Tian Y, Almaraz RT, Choi CH, Li QK, Saeui C, Li D, Shah P, Bhattacharya R, Yarema KJ, Zhang H: Identification of sialylated glycoproteins from metabolically oligosaccharide engineered pancreatic cells. Clinical proteomics 2015, 12:11.
5Goyallon A, Cholet S, Chapelle M, Junot C, Fenaille F: Evaluation of a combined glycomics and glycoproteomics approach for studying the major glycoproteins present in biofluids: Application to cerebrospinal fluid. Rapid Communications in Mass Spectrometry 2015, 29:461-473.
7Li Y, Shah P, De Marzo AM, Van Eyk JE, Lo Q, Chan DW, Zhang H: Identification of Glycoproteins Containing Specific Glycans Using a Lectin-Chemical Method. Analytical Chemistry 2015, 87:4683-4687.
8Ma C, Zhang Q, Qu JY, Zhao XY, Li X, Liu YP, Wang PG: A precise approach in large scale core-fucosylated glycoprotein identification with low- and high-normalized collision energy. Journal of Proteomics 2015, 114:61-70.
9Smeekens JM, Chen WX, Wu RH: Mass Spectrometric Analysis of the Cell Surface N-Glycoproteome by Combining Metabolic Labeling and Click Chemistry. Journal of the American Society for Mass Spectrometry 2015, 26:604-614.
10Tan ZJ, Yin HD, Nie S, Lin ZX, Zhu JH, Ruffin MT, Anderson MA, Simone DM, Lubman DM: Large-Scale Identification of Core-Fucosylated Glycopeptide Sites in Pancreatic Cancer Serum Using Mass Spectrometry. Journal of Proteome Research 2015, 14:1968-1978.
11Wang M, Zhang X, Deng C: Facile synthesis of magnetic poly(styrene-co-4-vinylbenzene-boronic acid) microspheres for selective enrichment of glycopeptides. Proteomics 2015, 15:2158-2165.
12Weng Y, Sui Z, Jiang H, Shan Y, Chen L, Zhang S, Zhang L, Zhang Y: Releasing N-glycan from Peptide N-terminus by N-terminal Succinylation Assisted Enzymatic Deglycosylation. Scientific Reports 2015, 5.
13Yang W, Laeyendecker O, Wendel SK, Zhang B, Sun S, Zhou J-Y, Ao M, Moore RD, Jackson JB, Zhang H: Glycoproteomic Study Reveals Altered Plasma Proteins Associated with HIV Elite Suppressors. Theranostics 2014, 4:1153.
14Liu Y, Chen J, Sethi A, Li QK, Chen L, Collins B, Gillet LC, Wollscheid B, Zhang H, Aebersold R: Glycoproteomic analysis of prostate cancer tissues by SWATH mass spectrometry discovers N-acylethanolamine acid amidase and protein tyrosine kinase 7 as signatures for tumor aggressiveness. Molecular & Cellular Proteomics 2014, 13:1753-1768.
15Chen R, Seebun D, Ye M, Zou H, Figeys D: Site-specific characterization of cell membrane N-glycosylation with integrated hydrophilic interaction chromatography solid phase extraction and LC-MS/MS. Journal of Proteomics 2014, 103:194-203.
17Fang C, Xiong Z, Qin H, Huang G, Liu J, Ye M, Feng S, Zou H: One-pot synthesis of magnetic colloidal nanocrystal clusters coated with chitosan for selective enrichment of glycopeptides. Analytica Chimica Acta 2014, 841:99-105.
18Hirao Y, Matsuzaki H, Iwaki J, Kuno A, Kaji H, Ohkura T, Togayachi A, Abe M, Nomura M, Noguchi M, et al: Glycoproteomics Approach for Identifying Glycobiomarker Candidate Molecules for Tissue Type Classification of Non-small Cell Lung Carcinoma. Journal of Proteome Research 2014, 13:4705-4716.
19Huang G, Sun Z, Qin H, Zhao L, Xiong Z, Peng X, Ou J, Zou H: Preparation of hydrazine functionalized polymer brushes hybrid magnetic nanoparticles for highly specific enrichment of glycopeptides. Analyst 2014, 139:2199-2206.
20Kim JY, Oh D, Kim S-K, Kang D, Moon MH: Isotope-Coded Carbamidomethylation for Quantification of N-Glycoproteins with Online Microbore Hollow Fiber Enzyme Reactor-Nanoflow Liquid Chromatography-Tandem Mass Spectrometry. Analytical Chemistry 2014, 86:7650-7657.
21Liu L, Yu M, Zhang Y, Wang C, Lu H: Hydrazide Functionalized Core-Shell Magnetic Nanocomposites for Highly Specific Enrichment of N-Glycopeptides. Acs Applied Materials & Interfaces 2014, 6:7823-7832.
22Nicastri A, Gaspari M, Sacco R, Elia L, Gabriele C, Romano R, Rizzuto A, Cuda G: N-Glycoprotein Analysis Discovers New Up-Regulated Glycoproteins in Colorectal Cancer Tissue. Journal of Proteome Research 2014, 13:4932-4941.
24Song E, Zhu R, Hammond ZT, Mechref Y: LC-MS/MS Quantitation of Esophagus Disease Blood Serum Glycoproteins by Enrichment with Hydrazide Chemistry and Lectin Affinity Chromatography. Journal of Proteome Research 2014, 13:4808-4820.
26Takakura D, Harazono A, Hashii N, Kawasaki N: Selective glycopeptide profiling by acetone enrichment and LC/MS. Journal of Proteomics 2014, 101:17-30.
27Wang J, Zhou C, Zhang W, Yao J, Lu HJ, Dong QZ, Zhou HJ, Qin LX: An integrative strategy for quantitative analysis of the N-glycoproteome in complex biological samples. Proteome Science 2014, 12.
28Wang Y, Liu M, Xie L, Fang C, Xiong H, Lu H: Highly Efficient Enrichment Method for Glycopeptide Analyses: Using Specific and Nonspecific Nanoparticles Synergistically. Analytical Chemistry 2014, 86:2057-2064.
31Zhang L, Jiang H, Yao J, Wang Y, Fang C, Yang P, Lu H: Highly specific enrichment of N-linked glycopeptides based on hydrazide functionalized soluble nanopolymers. Chemical Communications 2014, 50:1027-1029.
32Zhang Z, Sun Z, Zhu J, Liu J, Huang G, Ye M, Zou H: High-Throughput Determination of the Site-Specific N-Sialoglycan Occupancy Rates by Differential Oxidation of Glycoproteins Followed with Quantitative Glycoproteomics Analysis. Analytical Chemistry 2014, 86:9830-9837.
33Zhu J, Sun Z, Cheng K, Chen R, Ye M, Xu B, Sun D, Wang L, Liu J, Wang F, Zou H: Comprehensive Mapping of Protein N-Glycosylation in Human Liver by Combining Hydrophilic Interaction Chromatography and Hydrazide Chemistry. Journal of Proteome Research 2014, 13:1713-1721.
34Sun S, Zhang B, Aiyetan P, Zhou J-Y, Shah P, Yang W, Levine DA, Zhang Z, Chan DW, Zhang H: Analysis of N-glycoproteins using Genomic N-glycosite Prediction. Journal of Proteome Research 2013, 12:5609-5615.
35Chen J, Shah P, Zhang H: Solid phase extraction of N-linked glycopeptides using hydrazide tip. Analytical chemistry 2013, 85:10670-10674.
37Boersema PJ, Geiger T, Wisniewski JR, Mann M: Quantification of the N-glycosylated Secretome by Super-SILAC During Breast Cancer Progression and in Human Blood Samples. Molecular & Cellular Proteomics 2013, 12:158-171.
38Kaji H, Ocho M, Togayachi A, Kuno A, Sogabe M, Ohkura T, Nozaki H, Angata T, Chiba Y, Ozaki H, et al: Glycoproteomic Discovery of Serological Biomarker Candidates for HCV/HBV Infection-Associated Liver Fibrosis and Hepatocellular Carcinoma. Journal of Proteome Research 2013, 12:2630-2640.
39Li QK, Shah P, Li Y, Aiyetan PO, Chen J, Yung R, Molena D, Gabrielson E, Askin F, Chan DW, Zhang H: Glycoproteomic Analysis of Bronchoalveolar Lavage (BAL) Fluid Identifies Tumor-Associated Glycoproteins from Lung Adenocarcinonna. Journal of Proteome Research 2013, 12:3689-3696.
40Li X, Jiang J, Zhao X, Wang J, Han H, Zhao Y, Peng B, Zhong R, Ying W, Qian X: N-glycoproteome Analysis of the Secretome of Human Metastatic Hepatocellular Carcinoma Cell Lines Combining Hydrazide Chemistry, HILIC Enrichment and Mass Spectrometry. Plos One 2013, 8.
42Ma C, Zhao X, Han H, Tong W, Zhang Q, Qin P, Chang C, Peng B, Ying W, Qian X: N-linked glycoproteome profiling of human serum using tandem enrichment and multiple fraction concatenation. Electrophoresis 2013, 34:2440-2450.
43Wang GG, Wu YB, Zhou T, Guo YS, Zheng B, Wang J, Bi Y, Liu FJ, Zhou ZM, Guo XJ, Sha JH: Mapping of the N-Linked Glycoproteome of Human Spermatozoa. Journal of Proteome Research 2013, 12:5750-5759.
45Zhou H, Froehlich JW, Briscoe AC, Lee RS: The GlycoFilter: A Simple and Comprehensive Sample Preparation Platform for Proteomics, N-Glycomics and Glycosylation Site Assignment. Molecular & Cellular Proteomics 2013, 12:2981-2991.
48Danzer C, Eckhardt K, Schmidt A, Fankhauser N, Ribrioux S, Wollscheid B, Mueller L, Schiess R, Zuellig R, Lehmann R, et al: Comprehensive Description of the N-Glycoproteome of Mouse Pancreatic beta-Cells and Human Islets. Journal of Proteome Research 2012, 11:1598-1608.
50Whitmore TE, Peterson A, Holzman T, Eastham A, Amon L, McIntosh M, Ozinsky A, Nelson PS, Martin DB: Integrative Analysis of N-Linked Human Glycoproteomic Data Sets Reveals PTPRF Ectodomain as a Novel Plasma Biomarker Candidate for Prostate Cancer. Journal of Proteome Research 2012, 11:2653-2665.
51Yeh C-H, Chen S-H, Li D-T, Lin H-P, Huang H-J, Chang C-I, Shih W-L, Chern C-L, Shi F-K, Hsu J-L: Magnetic bead-based hydrophilic interaction liquid chromatography for glycopeptide enrichments. Journal of Chromatography A 2012, 1224:70-78.
52Yen T-Y, Macher BA, McDonald CA, Alleyne-Chin C, Timpe LC: Glycoprotein Profiles of Human Breast Cells Demonstrate a Clear Clustering of Normal/Benign versus Malignant Cell Lines and Basal versus Luminal Cell Lines. Journal of Proteome Research 2012, 11:656-667.
53Zhu J, Wang F, Chen R, Cheng K, Xu B, Guo Z, Liang X, Ye M, Zou H: Centrifugation Assisted Microreactor Enables Facile Integration of Trypsin Digestion, Hydrophilic Interaction Chromatography Enrichment, and On-Column Deglycosylation for Rapid and Sensitive N-Glycoproteome Analysis. Analytical Chemistry 2012, 84:5146-5153.
54Tian Y, Yao Z, Roden R, Zhang H: Identification of glycoproteins associated with different histological subtypes of ovarian tumors using quantitative glycoproteomics. Proteomics 2011, 11:4677-4687.
55Tian Y, Bova GS, Zhang H: Quantitative glycoproteomic analysis of optimal cutting temperature-embedded frozen tissues identifying glycoproteins associated with aggressive prostate cancer. Analytical chemistry 2011, 83:7013-7019.
58Nagano K, Shinkawa T, Kato K, Inomata N, Yabuki N, Haramura M: Distinct cell surface proteome profiling by biotin labeling and glycoprotein capturing. Journal of Proteomics 2011, 74:1985-1993.
59Lee H-J, Na K, Choi E-Y, Kim KS, Kim H, Paik Y-K: Simple Method for Quantitative Analysis of N-Linked Glycoproteins in Hepatocellular Carcinoma Specimens. Journal of Proteome Research 2010, 9:308-318.
60Liu Z, Cao L, He Y, Qiao L, Xu C, Lu H, Yang P: Tandem O-18 Stable Isotope Labeling for Quantification of N-Glycoproteome. Journal of Proteome Research 2010, 9:227-236.
62Arcinas A, Yen T-Y, Kebebew E, Macher BA: Cell Surface and Secreted Protein Profiles of Human Thyroid Cancer Cell Lines Reveal Distinct Glycoprotein Patterns. Journal of Proteome Research 2009, 8:3958-3968.
63Cao J, Shen C, Wang H, Shen H, Chen Y, Nie A, Yan G, Lu H, Liu Y, Yang P: Identification of N-Glycosylation Sites on Secreted Proteins of Human Hepatocellular Carcinoma Cells with a Complementary Proteomics Approach. Journal of Proteome Research 2009, 8:662-672.
64Chen R, Jiang X, Sun D, Han G, Wang F, Ye M, Wang L, Zou H: Glycoproteomics analysis of human liver tissue by combination of multiple enzyme digestion and hydrazide chemistry. J Proteome Res 2009, 8:651-661.
66Jia W, Lu Z, Fu Y, Wang H-P, Wang L-H, Chi H, Yuan Z-F, Zheng Z-B, Song L-N, Han H-H, et al: A Strategy for Precise and Large Scale Identification of Core Fucosylated Glycoproteins. Molecular & Cellular Proteomics 2009, 8:913-923.
69Calvano CD, Zambonin CG, Jensen ON: Assessment of lectin and HILIC based enrichment protocols for characterization of serum glycoproteins by mass spectrometry. Journal of Proteomics 2008, 71:304-317.
70Picariello G, Ferranti P, Mamone G, Roepstorff P, Addeo F: Identification of N-linked glycoproteins in human milk by hydrophilic interaction liquid chromatography and mass spectrometry. Proteomics 2008, 8:3833-3847.
71Hagglund P, Matthiesen R, Elortza F, Hojrup P, Roepstorff P, Jensen ON, Bunkenborg J: An enzymatic deglycosylation scheme enabling identification of core fucosylated N-glycans and O-glycosylation site mapping of human plasma proteins. Journal of Proteome Research 2007, 6:3021-3031.
73Larsen MR, Jensen SS, Jakobsen LA, Heegaard NHH: Exploring the sialiome using titanium dioxide chromatography and mass spectrometry. Molecular & Cellular Proteomics 2007, 6:1778-1787.
74Lewandrowski U, Zahedi RP, Moebius J, Walter U, Sickmann A: Enhanced N-glycosylation site analysis of Sialoglycopeptides by strong cation exchange prefractionation applied to platelet plasma membranes. Molecular & Cellular Proteomics 2007, 6:1933-1941.
75Sun B, Ranish JA, Utleg AG, White JT, Yan X, Lin B, Hood L: Shotgun glycopeptide capture approach coupled with mass Spectrometry for comprehensive glycoproteomics. Molecular & Cellular Proteomics 2007, 6:141-149.
79Qiu RQ, Regnier FE: Comparative glycoproteomics of N-linked complex-type glycoforms containing sialic acid in human serum. Analytical Chemistry 2005, 77:7225-7231.
80Qiu RQ, Regnier FE: Use of multidimensional lectin affinity chromatography in differential glycoproteomics. Analytical Chemistry 2005, 77:2802-2809.
81Liu T, Qian WJ, Gritsenko MA, Camp DG, Monroe ME, Moore RJ, Smith RD: Human plasma N-glycoproteome analysis by immunoaffinity subtraction, hydrazide chemistry, and mass spectrometry. Journal of Proteome Research 2005, 4:2070-2080.