GlyCosmos PubAnnotations

Recent publication annotations of glycans, cell types, and proteins, from PubAnnotation.

Displaying entries 22701 - 22725 of 24862 in total
Title ▼ Authors PubMed ID Source Publication Year
Angiopoietin-like 4 interacts with matrix proteins to modulate wound healing.
  • Goh YY
  • Pal M
  • Chong HC
  • Zhu P
  • Tan MJ
  • Punugu L
  • Tan CK
  • Huang RL
  • Sze SK
  • Tang MBY
  • Ding JL
  • Kersten S
  • Tan NS
20729546 J Biol Chem 2010
Angiopoietin-3 is tethered on the cell surface via heparan sulfate proteoglycans.
  • Xu Y
  • Liu YJ
  • Yu Q
15280392 J Biol Chem 2004
Angioinhibitory action of NK4 involves impaired extracellular assembly of fibronectin mediated by perlecan-NK4 association.
  • Sakai K
  • Nakamura T
  • Matsumoto K
  • Nakamura T
19553700 J Biol Chem 2009
Angiogenic oligosaccharides of hyaluronan induce multiple signaling pathways affecting vascular endothelial cell mitogenic and wound healing responses.
  • Slevin M
  • Kumar S
  • Gaffney J
12194965 J Biol Chem 2002
Anchoring of surface proteins to the cell wall of Staphylococcus aureus. Sortase catalyzed in vitro transpeptidation reaction using LPXTG peptide and NH(2)-Gly(3) substrates.
  • Ton-That H
  • Mazmanian SK
  • Faull KF
  • Schneewind O
10734144 J Biol Chem 2000
Anchoring of surface proteins to the cell wall of Staphylococcus aureus. III. Lipid II is an in vivo peptidoglycan substrate for sortase-catalyzed surface protein anchoring.
  • Perry AM
  • Ton-That H
  • Mazmanian SK
  • Schneewind O
11856734 J Biol Chem 2002
Anchoring of surface proteins to the cell wall of Staphylococcus aureus. Cysteine 184 and histidine 120 of sortase form a thiolate-imidazolium ion pair for catalysis.
  • Ton-That H
  • Mazmanian SK
  • Alksne L
  • Schneewind O
11714722 J Biol Chem 2002
Anchoring of surface proteins to the cell wall of Staphylococcus aureus. A conserved arginine residue is required for efficient catalysis of sortase A.
  • Marraffini LA
  • Ton-That H
  • Zong Y
  • Narayana SV
  • Schneewind O
15247224 J Biol Chem 2004
Anchoring fibrils contain the carboxyl-terminal globular domain of type VII procollagen, but lack the amino-terminal globular domain.
  • Lunstrum GP
  • Kuo HJ
  • Rosenbaum LM
  • Keene DR
  • Glanville RW
  • Sakai LY
  • Burgeson RE
2443495 J Biol Chem 1987
Anchor structure of staphylococcal surface proteins. V. Anchor structure of the sortase B substrate IsdC.
  • Marraffini LA
  • Schneewind O
15718231 J Biol Chem 2005
Anchor structure of staphylococcal surface proteins. IV. Inhibitors of the cell wall sorting reaction.
  • Ton-That H
  • Schneewind O
10446208 J Biol Chem 1999
Anchor structure of staphylococcal surface proteins. III. Role of the FemA, FemB, and FemX factors in anchoring surface proteins to the bacterial cell wall.
  • Ton-That H
  • Labischinski H
  • Berger-Bächi B
  • Schneewind O
9786923 J Biol Chem 1998
Anchor structure of staphylococcal surface proteins. II. Cooh-terminal structure of muramidase and amidase-solubilized surface protein.
  • Navarre WW
  • Ton-That H
  • Faull KF
  • Schneewind O
9786922 J Biol Chem 1998
Anchor structure of staphylococcal surface proteins. II. Cooh-terminal structure of muramidase and amidase-solubilized surface protein.
  • Navarre WW
  • Ton-That H
  • Faull KF
  • Schneewind O
9786922 J Biol Chem 1998
Anchor structure of staphylococcal surface proteins. II. Cooh-terminal structure of muramidase and amidase-solubilized surface protein.
  • Navarre WW
  • Ton-That H
  • Faull KF
  • Schneewind O
9786922 J Biol Chem 1998
Anchor structure of staphylococcal surface proteins. II. Cooh-terminal structure of muramidase and amidase-solubilized surface protein.
  • Navarre WW
  • Ton-That H
  • Faull KF
  • Schneewind O
9786922 J Biol Chem 1998
Anchor structure of staphylococcal surface proteins. A branched peptide that links the carboxyl terminus of proteins to the cell wall.
  • Ton-That H
  • Faull KF
  • Schneewind O
9268378 J Biol Chem 1997
Anchimeric assistance in the intramolecular reaction of glucose-dehydrogenase-polyethylene glycol NAD conjugate.
  • Nakamura A
  • Urabe I
  • Okada H
3097012 J Biol Chem 1986
Analyzing the effects of psychotropic drugs on metabolite profiles in rat brain using 1H NMR spectroscopy.
  • McLoughlin GA
  • Ma D
  • Tsang TM
  • Jones DN
  • Cilia J
  • Hill MD
  • Robbins MJ
  • Benzel IM
  • Maycox PR
  • Holmes E
  • Bahn S
19714815 J Proteome Res 2009
Analytical constraints for the analysis of human cell line secretomes by shotgun proteomics.
  • Malard V
  • Chardan L
  • Roussi S
  • Darolles C
  • Sage N
  • Gaillard JC
  • Armengaud J
22079246 J Proteomics 2012
Analytical characterization of lipopolysaccharide antigens from seven strains of Pseudomonas aeruginosa.
  • Horton D
  • Rodemeyer G
  • Haskell TH
405103 Carbohydr Res 1977
Analysis of uridine diphosphate-glucose pyrophosphorylase synthesis during differentiation in Dictyostelium discoideum.
  • Gustafson GL
  • Kong WY
  • Wright BE
4123920 J Biol Chem 1973
Analysis of upstream glucokinase promoter activity in transgenic mice and identification of glucokinase in rare neuroendocrine cells in the brain and gut.
  • Jetton TL
  • Liang Y
  • Pettepher CC
  • Zimmerman EC
  • Cox FG
  • Horvath K
  • Matschinsky FM
  • Magnuson MA
8106409 J Biol Chem 1994
Analysis of transport activity of Arabidopsis sugar alcohol permease homolog AtPLT5.
  • Reinders A
  • Panshyshyn JA
  • Ward JM
15525644 J Biol Chem 2005
Analysis of transmembrane segment 8 of the GLUT1 glucose transporter by cysteine-scanning mutagenesis and substituted cysteine accessibility.
  • Mueckler M
  • Makepeace C
14688257 J Biol Chem 2004

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