GlyCosmos PubAnnotations

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

Displaying entries 5076 - 5100 of 24862 in total
Title ▼ Authors PubMed ID Source Publication Year
Structural studies and biosynthetic aspects of the O-antigen polysaccharide from Escherichia coli O174.
  • Fontana C
  • Lundborg M
  • Weintraub A
  • Widmalm G
22572125 Carbohydr Res 2012
Structural snapshots of heparin depolymerization by heparin lyase I.
  • Han YH
  • Garron ML
  • Kim HY
  • Kim WS
  • Zhang Z
  • Ryu KS
  • Shaya D
  • Xiao Z
  • Cheong C
  • Kim YS
  • Linhardt RJ
  • Jeon YH
  • Cygler M
19801541 J Biol Chem 2009
Structural signatures and membrane helix 4 in GLUT1: inferences from human blood-brain glucose transport mutants.
  • Pascual JM
  • Wang D
  • Yang R
  • Shi L
  • Yang H
  • De Vivo DC
18387950 J Biol Chem 2008
Structural requirements of synthetic muropeptides to synergize with lipopolysaccharide in cytokine induction.
  • Traub S
  • Kubasch N
  • Morath S
  • Kresse M
  • Hartung T
  • Schmidt RR
  • Hermann C
14668350 J Biol Chem 2004
Structural requirements of heparin binding to Chlamydia trachomatis.
  • Chen JC
  • Zhang JP
  • Stephens RS
8626658 J Biol Chem 1996
Structural requirements of heparan sulfate for the binding to the tumor-derived adhesion factor/angiomodulin that induces cord-like structures to ECV-304 human carcinoma cells.
  • Kishibe J
  • Yamada S
  • Okada Y
  • Sato J
  • Ito A
  • Miyazaki K
  • Sugahara K
10809767 J Biol Chem 2000
Structural requirements in heparin for binding and activation of FGF-1 and FGF-4 are different from that for FGF-2.
  • Ishihara M
7537556 Glycobiology 1994
Structural requirements for the stability and microsomal transport activity of the human glucose 6-phosphate transporter.
  • Chen LY
  • Lin B
  • Pan CJ
  • Hiraiwa H
  • Chou JY
10940311 J Biol Chem 2000
Structural requirements for the neutralization of heparin-like saccharides by complement S protein/vitronectin.
  • Lane DA
  • Flynn AM
  • Pejler G
  • Lindahl U
  • Choay J
  • Preissner K
2445746 J Biol Chem 1987
Structural requirements for the extracellular interaction of plasminogen activator inhibitor 1 with endothelial cell matrix-associated vitronectin.
  • Preissner KT
  • Grulich-Henn J
  • Ehrlich HJ
  • Declerck P
  • Justus C
  • Collen D
  • Pannekoek H
  • Müller-Berghaus G
1698787 J Biol Chem 1990
Structural requirements for the binding of oligosaccharides to immobilized lectin of Erythrina variegata (Linn) var. orientalis.
  • Li H
  • Yamamoto K
  • Kawashima H
  • Osawa T
2136348 Glycoconj J 1990
Structural requirements for the binding of high-mannose-type glycopeptides to immobilized pokeweed Pa-2 lectin.
  • Katagiri Y
  • Yamamoto K
  • Tsuji T
  • Osawa T
6627249 Carbohydr Res 1983
Structural requirements for the adherence of Plasmodium falciparum-infected erythrocytes to chondroitin sulfate proteoglycans of human placenta.
  • Alkhalil A
  • Achur RN
  • Valiyaveettil M
  • Ockenhouse CF
  • Gowda DC
11005815 J Biol Chem 2000
Structural requirements for polymeric immunoglobulin assembly and association with J chain.
  • Yoo EM
  • Coloma MJ
  • Trinh KR
  • Nguyen TQ
  • Vuong LU
  • Morrison SL
  • Chintalacharuvu KR
10559270 J Biol Chem 1999
Structural requirements for high affinity binding of complex ligands by the macrophage mannose receptor.
  • Taylor ME
  • Drickamer K
8416946 J Biol Chem 1993
Structural requirements for heparin/heparan sulfate binding to type V collagen.
  • Ricard-Blum S
  • Beraud M
  • Raynal N
  • Farndale RW
  • Ruggiero F
16815843 J Biol Chem 2006
Structural requirements for heparan sulphate self-association.
  • Fransson LA
  • Havsmark B
6216949 Carbohydr Res 1982
Structural requirements for efficient processing and activation of recombinant human UDP-N-acetylglucosamine:lysosomal-enzyme-N-acetylglucosamine-1-phosphotransferase.
  • Kudo M
  • Canfield WM
16507578 J Biol Chem 2006
Structural requirements and mechanism for heparin-induced activation of a recombinant mouse mast cell tryptase, mouse mast cell protease-6: formation of active tryptase monomers in the presence of low molecular weight heparin.
  • Hallgren J
  • Spillmann D
  • Pejler G
11533057 J Biol Chem 2001
Structural requirement of heparan sulfate for interaction with herpes simplex virus type 1 virions and isolated glycoprotein C.
  • Feyzi E
  • Trybala E
  • Bergström T
  • Lindahl U
  • Spillmann D
9312084 J Biol Chem 1997
Structural remodeling of proteoglycans upon retinoic acid-induced differentiation of NCCIT cells.
  • Gasimli L
  • Stansfield HE
  • Nairn AV
  • Liu H
  • Paluh JL
  • Yang B
  • Dordick JS
  • Moremen KW
  • Linhardt RJ
23053635 Glycoconj J 2013
Structural relationships and sialylation among meningococcal L1, L8, and L3,7 lipooligosaccharide serotypes.
  • McLeod Griffiss J
  • Brandt BL
  • Saunders NB
  • Zollinger W
10734124 J Biol Chem 2000
Structural reevaluation of Streptococcus pneumoniae Lipoteichoic acid and new insights into its immunostimulatory potency.
  • Gisch N
  • Kohler T
  • Ulmer AJ
  • Müthing J
  • Pribyl T
  • Fischer K
  • Lindner B
  • Hammerschmidt S
  • Zähringer U
23603911 J Biol Chem 2013
Structural recognition by recombinant human heparanase that plays critical roles in tumor metastasis. Hierarchical sulfate groups with different effects and the essential target disulfated trisaccharide sequence.
  • Okada Y
  • Yamada S
  • Toyoshima M
  • Dong J
  • Nakajima M
  • Sugahara K
12213822 J Biol Chem 2002
Structural rearrangements of sucrose phosphorylase from Bifidobacterium adolescentis during sucrose conversion.
  • Mirza O
  • Skov LK
  • Sprogøe D
  • van den Broek LA
  • Beldman G
  • Kastrup JS
  • Gajhede M
16990265 J Biol Chem 2006

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