Priming mass spectrometry-based sulfoglycomic mapping for identification of terminal sulfated lacdiNAc glycotope
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K. Khoo | C. Chou | M. Fukuda | Shin-Yi Yu | Lan-Yi Chang | Chu-Wen Cheng
[1] Daniel Kolarich,et al. Glycomics, glycoproteomics and the immune system. , 2012, Current opinion in chemical biology.
[2] K. Khoo,et al. Identification of Mono- and Disulfated N-Acetyl-lactosaminyl Oligosaccharide Structures as Epitopes Specifically Recognized by Humanized Monoclonal Antibody HMOCC-1 Raised against Ovarian Cancer*♦ , 2011, The Journal of Biological Chemistry.
[3] K. Khoo,et al. Prominent expression of sialyl Lewis X‐capped core 2‐branched O‐glycans on high endothelial venule‐like vessels in gastric MALT lymphoma , 2011, The Journal of pathology.
[4] K. Ui-Tei,et al. LacdiNAc (GalNAcβ1‐4GlcNAc) Contributes to Self‐Renewal of Mouse Embryonic Stem Cells by Regulating Leukemia Inhibitory Factor/STAT3 Signaling , 2011, Stem cells.
[5] P. Altevogt,et al. N-Glycosylation of total cellular glycoproteins from the human ovarian carcinoma SKOV3 cell line and of recombinantly expressed human erythropoietin. , 2011, Glycobiology.
[6] Jayne E. Telford,et al. Discovering new clinical markers in the field of glycomics. , 2011, Biochemical Society transactions.
[7] Gerald W. Hart,et al. Glycomics Hits the Big Time , 2010, Cell.
[8] Joseph Zaia,et al. Mass spectrometry and glycomics. , 2010, Omics : a journal of integrative biology.
[9] Y. Mechref,et al. Sequential enrichment of sulfated glycans by strong anion-exchange chromatography prior to mass spectrometric measurements , 2010, Journal of the American Society for Mass Spectrometry.
[10] K. Khoo,et al. Mass spectrometric analysis of sulfated N- and O-glycans. , 2010, Methods in enzymology.
[11] K. Khoo,et al. Enabling techniques and strategic workflow for sulfoglycomics based on mass spectrometry mapping and sequencing of permethylated sulfated glycans. , 2009, Glycobiology.
[12] Simon J North,et al. Mass spectrometry in the analysis of N-linked and O-linked glycans. , 2009, Current opinion in structural biology.
[13] Y. Mechref,et al. Structural analysis of sulfated glycans by sequential double-permethylation using methyl iodide and deuteromethyl iodide , 2009, Journal of the American Society for Mass Spectrometry.
[14] Kai-Fai Lee,et al. Effects of Differential Glycosylation of Glycodelins on Lymphocyte Survival* , 2009, Journal of Biological Chemistry.
[15] Naoyuki Taniguchi,et al. Comparison of the methods for profiling glycoprotein glycans--HUPO Human Disease Glycomics/Proteome Initiative multi-institutional study. , 2007, Glycobiology.
[16] J. Marth,et al. Critical functions of N-glycans in L-selectin-mediated lymphocyte homing and recruitment , 2007, Nature Immunology.
[17] Hiroto Kawashima,et al. Roles of sulfated glycans in lymphocyte homing. , 2006, Biological & pharmaceutical bulletin.
[18] K. Khoo,et al. Distinctive characteristics of MALDI-Q/TOF and TOF/TOF tandem mass spectrometry for sequencing of permethylated complex type N-glycans , 2006, Glycoconjugate Journal.
[19] Mark Sutton-Smith,et al. Glycomic profiling of cells and tissues by mass spectrometry: fingerprinting and sequencing methodologies. , 2006, Methods in enzymology.
[20] J. Baenziger,et al. Differential expression and enzymatic properties of GalNAc-4-sulfotransferase-1 and GalNAc-4-sulfotransferase-2. , 2005, Glycobiology.
[21] D. Harvey. Structural determination of N‐linked glycans by matrix‐assisted laser desorption/ionization and electrospray ionization mass spectrometry , 2005, Proteomics.
[22] S. Rosen. Ligands for L-selectin: homing, inflammation, and beyond. , 2004, Annual review of immunology.
[23] J. Michalski,et al. Diagnostic ions for the rapid analysis by nano-electrospray ionization quadrupole time-of-flight mass spectrometry of O-glycans from human mucins. , 2004, Rapid communications in mass spectrometry : RCM.
[24] H. Nakanishi,et al. Molecular Cloning and Characterization of a Novel Human β1,4-N-Acetylgalactosaminyltransferase, β4GalNAc-T3, Responsible for the Synthesis of N,N′-Diacetyllactosediamine, GalNAcβ1–4GlcNAc* , 2003, Journal of Biological Chemistry.
[25] J. Baenziger. Glycoprotein hormone GalNAc-4-sulphotransferase. , 2003, Biochemical Society transactions.
[26] H. Nakanishi,et al. Molecular cloning and characterization of a novel human beta 1,4-N-acetylgalactosaminyltransferase, beta 4GalNAc-T3, responsible for the synthesis of N,N'-diacetyllactosediamine, galNAc beta 1-4GlcNAc. , 2003, Journal of Biological Chemistry.
[27] D. Fiete,et al. Spatial and Temporal Regulation of Tenascin-R Glycosylation in the Cerebellum* , 2002, The Journal of Biological Chemistry.
[28] K. Yamashita,et al. Occurrence of secretory glycoprotein-specific GalNAc beta 1-->4GlcNAc sequence in N-glycans in MDCK cells. , 2002, Journal of biochemistry.
[29] D. Harvey,et al. Extension of the in-gel release method for structural analysis of neutral and sialylated N-linked glycans to the analysis of sulfated glycans: application to the glycans from bovine thyroid-stimulating hormone. , 2001, Analytical biochemistry.
[30] G. Hansson,et al. Sequencing of sulfated oligosaccharides from mucins by liquid chromatography and electrospray ionization tandem mass spectrometry. , 2000, Analytical chemistry.
[31] S. Tsuboi,et al. A novel, high endothelial venule-specific sulfotransferase expresses 6-sulfo sialyl Lewis(x), an L-selectin ligand displayed by CD34. , 1999, Immunity.
[32] J. Kamerling,et al. Sulfated di-, tri- and tetraantennary N-glycans in human Tamm-Horsfall glycoprotein. , 1998, European journal of biochemistry.
[33] R. Cummings,et al. Differential expression of LacdiNAc sequences (GalNAc beta 1-4GlcNAc-R) in glycoproteins synthesized by Chinese hamster ovary and human 293 cells. , 1997, Glycobiology.
[34] L. Hooper,et al. Differential Expression of GalNAc-4-sulfotransferase and GalNAc-transferase Results in Distinct Glycoforms of Carbonic Anhydrase VI in Parotid and Submaxillary Glands (*) , 1995, The Journal of Biological Chemistry.
[35] J. Kamerling,et al. The major N-linked carbohydrate chains from human urokinase. The occurrence of 4-O-sulfated, (alpha 2-6)-sialylated or (alpha 1-3)-fucosylated N-acetylgalactosamine(beta 1-4)-N-acetylglucosamine elements. , 1995, European journal of biochemistry.
[36] J. Kamerling,et al. The Major N‐Linked Carbohydrate Chains from Human Urokinase , 1995 .
[37] D. H. van den Eijnden,et al. Novel glycosylation routes for glycoproteins: the lacdiNAc pathway. , 1995, Biochemical Society transactions.
[38] G. Broze,et al. The asparagine-linked oligosaccharides on tissue factor pathway inhibitor terminate with SO4-4GalNAc beta 1, 4GlcNAc beta 1,2 Mana alpha. , 1992, The Journal of biological chemistry.
[39] A. Dell,et al. Fast-atom-bombardment mass spectrometry of sulphated oligosaccharides from ovine lutropin. , 1991, Carbohydrate research.
[40] C. Hellerqvist,et al. Mass spectrometry of carbohydrates. , 1990, Methods of biochemical analysis.
[41] J. Baenziger,et al. Pituitary glycoprotein hormone oligosaccharides: structure, synthesis and function of the asparagine-linked oligosaccharides on lutropin, follitropin and thyrotropin. , 1988, Biochimica et biophysica acta.
[42] J. Baenziger,et al. Asparagine-linked oligosaccharides on lutropin, follitropin, and thyrotropin. I. Structural elucidation of the sulfated and sialylated oligosaccharides on bovine, ovine, and human pituitary glycoprotein hormones. , 1988, The Journal of biological chemistry.
[43] J. Baenziger,et al. Asparagine-linked oligosaccharides on lutropin, follitropin, and thyrotropin. II. Distributions of sulfated and sialylated oligosaccharides on bovine, ovine, and human pituitary glycoprotein hormones. , 1988, The Journal of biological chemistry.
[44] A. Dell,et al. F.A.B.-mass spectrometry of carbohydrates. , 1987, Advances in carbohydrate chemistry and biochemistry.
[45] A. Varki,et al. The spectrum of anionic oligosaccharides released by endo-beta-N-acetylglucosaminidase H from glycoproteins. Structural studies and interactions with the phosphomannosyl receptor. , 1983, The Journal of biological chemistry.
[46] A. Varki,et al. Structural studies of phosphorylated high mannose-type oligosaccharides. , 1980, The Journal of biological chemistry.
[47] J. Kamerling,et al. Mass spectrometry of carbohydrates. , 1975, Biochemical Society transactions.