GlyCosmos PubAnnotations

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

Displaying entries 15651 - 15675 of 24862 in total
Title ▼ Authors PubMed ID Source Publication Year
Glycosphingolipids are essential for intestinal endocytic function.
  • Jennemann R
  • Kaden S
  • Sandhoff R
  • Nordström V
  • Wang S
  • Volz M
  • Robine S
  • Amen N
  • Rothermel U
  • Wiegandt H
  • Gröne HJ
22851168 J Biol Chem 2012
Glycosphingolipids and mitochondria: role in apoptosis and disease.
  • Morales A
  • Colell A
  • Mari M
  • Garcia-Ruiz C
  • Fernandez-Checa JC
15454696 Glycoconj J 2004
Glycosphingolipid-facilitated membrane insertion and internalization of cobra cardiotoxin. The sulfatide.cardiotoxin complex structure in a membrane-like environment suggests a lipid-dependent cell-penetrating mechanism for membrane binding polypeptides.
  • Wang CH
  • Liu JH
  • Lee SC
  • Hsiao CD
  • Wu WG
16263708 J Biol Chem 2006
Glycosphingolipid-enriched signaling domain in mouse neuroblastoma Neuro2a cells. Mechanism of ganglioside-dependent neuritogenesis.
  • Prinetti A
  • Iwabuchi K
  • Hakomori S
10409636 J Biol Chem 1999
Glycosphingolipid-Glycan Signatures of Acute Myeloid Leukemia Cell Lines Reflect Hematopoietic Differentiation.
  • Wang D
  • Zhang T
  • Madunić K
  • de Waard AA
  • Blöchl C
  • Mayboroda OA
  • Griffioen M
  • Spaapen RM
  • Huber CG
  • Lageveen-Kammeijer GSM
  • Wuhrer M
35168327 J Proteome Res 2022
Glycosphingolipid receptor function is modified by fatty acid content. Verotoxin 1 and verotoxin 2c preferentially recognize different globotriaosyl ceramide fatty acid homologues.
  • Kiarash A
  • Boyd B
  • Lingwood CA
8157640 J Biol Chem 1994
Glycosphingolipid profile of the apical pole of human placental capillaries: the relevancy of the observed data to Fabry disease.
  • Hůlková H
  • Ledvinová J
  • Kuchař L
  • Šmíd F
  • Honzíková J
  • Elleder M
22319058 Glycobiology 2012
Glycosphingolipid patterns of the gastrointestinal tract and feces of germ-free and conventional rats.
  • Gustafsson BE
  • Karlsson KA
  • Larson G
  • Midtvedt T
  • Strömberg N
  • Teneberg S
  • Thurin J
3771576 J Biol Chem 1986
Glycosphingolipid inhibition of the adhesion of thrombin-activated platelets to surfaces is potentiated by albumin.
  • Cunningham MT
  • Olson JD
  • Koerner TA
8400548 Glycobiology 1993
Glycosphingolipid expression in spontaneously aborted fetuses and placenta from blood group p women. Evidence for placenta being the primary target for anti-Tja-antibodies.
  • Lindström K
  • Von Dem Borne AE
  • Breimer ME
  • Cedergren B
  • Okubo Y
  • Rydberg L
  • Teneberg S
  • Samuelsson BE
1305424 Glycoconj J 1992
Glycosphingolipid expression in pig aorta: identification of possible target antigens for human natural antibodies.
  • Hallberg EC
  • Holgersson J
  • Samuelsson BE
9621105 Glycobiology 1998
Glycosphingolipid expression in human skeletal and heart muscle assessed by immunostaining thin-layer chromatography.
  • Müthing J
  • Cacić M
9076510 Glycoconj J 1997
Glycosphingolipid dynamics in human embryonic stem cell and cancer: their characterization and biomedical implications.
  • Ho MY
  • Yu AL
  • Yu J
27549315 Glycoconj J 2017
Glycosphingolipid deficiency affects functional microdomain formation in Lewis lung carcinoma cells.
  • Inokuchi JI
  • Uemura S
  • Kabayama K
  • Igarashi Y
11201796 Glycoconj J 2000
Glycosphingolipid composition of epithelial cells isolated along the villus axis of small intestine of a single human individual.
  • Breimer ME
  • Hansson GC
  • Karlsson KA
  • Larson G
  • Leffler H
22833314 Glycobiology 2012
Glycosphingolipid beta-galactosidases. IV. Electrofocusing characterization in G-M-1-gangliosides.
  • Suzuki Y
  • Suzuki K
4818827 J Biol Chem 1974
Glycosphingolipid accumulation inhibits cholesterol efflux via the ABCA1/apolipoprotein A-I pathway: 1-phenyl-2-decanoylamino-3-morpholino-1-propanol is a novel cholesterol efflux accelerator.
  • Glaros EN
  • Kim WS
  • Quinn CM
  • Wong J
  • Gelissen I
  • Jessup W
  • Garner B
15890646 J Biol Chem 2005
Glycosphingolipid (GSL) microdomains as attachment platforms for host pathogens and their toxins on intestinal epithelial cells: activation of signal transduction pathways and perturbations of intestinal absorption and secretion.
  • Fantini J
  • Maresca M
  • Hammache D
  • Yahi N
  • Delézay O
11201788 Glycoconj J 2000
Glycosides for testing glycosidases: vinyl, 1-ethoxyethyl, and 1-ethoxybut-3-enyl D-glucopyranosides.
  • Dettinger HM
  • Lehmann J
  • Wallenfels K
7438141 Carbohydr Res 1980
Glycoside hydrolase family 89 alpha-N-acetylglucosaminidase from Clostridium perfringens specifically acts on GlcNAc alpha1,4Gal beta1R at the non-reducing terminus of O-glycans in gastric mucin.
  • Fujita M
  • Tsuchida A
  • Hirata A
  • Kobayashi N
  • Goto K
  • Osumi K
  • Hirose Y
  • Nakayama J
  • Yamanoi T
  • Ashida H
  • Mizuno M
21177247 J Biol Chem 2011
Glycosaminoglycans reduce oxidative damage induced by copper (Cu+2), iron (Fe+2) and hydrogen peroxide (H2O2) in human fibroblast cultures.
  • Campo GM
  • D'Ascola A
  • Avenoso A
  • Campo S
  • Ferlazzo AM
  • Micali C
  • Zanghì L
  • Calatroni A
15001845 Glycoconj J 2004
Glycosaminoglycans modulate activation, activity, and stability of tripeptidyl-peptidase I in vitro and in vivo.
  • Golabek AA
  • Walus M
  • Wisniewski KE
  • Kida E
15582991 J Biol Chem 2005
Glycosaminoglycans in the blood of hereditary multiple exostoses patients: Half reduction of heparan sulfate to chondroitin sulfate ratio and the possible diagnostic application.
  • Anower-E-Khuda MF
  • Matsumoto K
  • Habuchi H
  • Morita H
  • Yokochi T
  • Shimizu K
  • Kimata K
23514715 Glycobiology 2013
Glycosaminoglycans in Hydra magnipapillata (Hydrozoa, Cnidaria): demonstration of chondroitin in the developing nematocyst, the sting organelle, and structural characterization of glycosaminoglycans.
  • Yamada S
  • Morimoto H
  • Fujisawa T
  • Sugahara K
17513885 Glycobiology 2007
Glycosaminoglycans have variable effects on α-synuclein aggregation and differentially affect the activities of the resulting amyloid fibrils.
  • Mehra S
  • Ghosh D
  • Kumar R
  • Mondal M
  • Gadhe LG
  • Das S
  • Anoop A
  • Jha NN
  • Jacob RS
  • Chatterjee D
  • Ray S
  • Singh N
  • Kumar A
  • Maji SK
29959225 J Biol Chem 2018

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