GlyCosmos PubAnnotations

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

Displaying entries 2151 - 2175 of 24862 in total
Title ▲ Authors PubMed ID Source Publication Year
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. IV. Inhibitors of the cell wall sorting reaction.
  • Ton-That H
  • Schneewind O
10446208 J Biol Chem 1999
Anchor structure of staphylococcal surface proteins. V. Anchor structure of the sortase B substrate IsdC.
  • Marraffini LA
  • Schneewind O
15718231 J Biol Chem 2005
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
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 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. 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. 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
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
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
Angiopoietin-3 is tethered on the cell surface via heparan sulfate proteoglycans.
  • Xu Y
  • Liu YJ
  • Yu Q
15280392 J Biol Chem 2004
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-like 4 promotes the intracellular cleavage of lipoprotein lipase by PCSK3/furin in adipocytes.
  • Dijk W
  • Ruppert PMM
  • Oost LJ
  • Kersten S
30021841 J Biol Chem 2018
Angiopoietin-like protein 3 inhibits lipoprotein lipase activity through enhancing its cleavage by proprotein convertases.
  • Liu J
  • Afroza H
  • Rader DJ
  • Jin W
20581395 J Biol Chem 2010
Angiostatic cues from the matrix: Endothelial cell autophagy meets hyaluronan biology.
  • Chen CG
  • Iozzo RV
33020183 J Biol Chem 2020
Angiotensin II initiates tyrosine kinase Pyk2-dependent signalings leading to activation of Rac1-mediated c-Jun NH2-terminal kinase.
  • Murasawa S
  • Matsubara H
  • Mori Y
  • Masaki H
  • Tsutsumi Y
  • Shibasaki Y
  • Kitabayashi I
  • Tanaka Y
  • Fujiyama S
  • Koyama Y
  • Fujiyama A
  • Iba S
  • Iwasaka T
10856308 J Biol Chem 2000
Angiotensin II stimulates glucose transport activity in cultured vascular smooth muscle cells.
  • Low BC
  • Ross IK
  • Grigor MR
1400389 J Biol Chem 1992
Angiotensin II-induced NADPH oxidase activation impairs insulin signaling in skeletal muscle cells.
  • Wei Y
  • Sowers JR
  • Nistala R
  • Gong H
  • Uptergrove GM
  • Clark SE
  • Morris EM
  • Szary N
  • Manrique C
  • Stump CS
16982630 J Biol Chem 2006
Anhydro sugar and linkage contributions to circular dichroism of agarose and carrageenan, with conformational implications.
  • Arndt ER
  • Stevens ES
9345754 Carbohydr Res 1997
Animal model for maturity-onset diabetes of the young generated by disruption of the mouse glucokinase gene.
  • Bali D
  • Svetlanov A
  • Lee HW
  • Fusco-DeMane D
  • Leiser M
  • Li B
  • Barzilai N
  • Surana M
  • Hou H
  • Fleischer N
7665557 J Biol Chem 1995
Anionic amino acids support hydrolysis of poly-β-(1,6)-N-acetylglucosamine exopolysaccharides by the biofilm dispersing glycosidase Dispersin B.
  • Breslawec AP
  • Wang S
  • Li C
  • Poulin MB
33334876 J Biol Chem 2021
Anionic and zwitterionic moieties as widespread glycan modifications in non-vertebrates.
  • Paschinger K
  • Wilson IBH
31278613 Glycoconj J 2020
Anks4b, a novel target of HNF4α protein, interacts with GRP78 protein and regulates endoplasmic reticulum stress-induced apoptosis in pancreatic β-cells.
  • Sato Y
  • Hatta M
  • Karim MF
  • Sawa T
  • Wei FY
  • Sato S
  • Magnuson MA
  • Gonzalez FJ
  • Tomizawa K
  • Akaike T
  • Yoshizawa T
  • Yamagata K
22589549 J Biol Chem 2012
Annexin VII and annexin XI are tyrosine phosphorylated in peroxovanadate-treated dogs and in platelet-derived growth factor-treated rat vascular smooth muscle cells.
  • Furge LL
  • Chen K
  • Cohen S
10559235 J Biol Chem 1999
Annotation and structural analysis of sialylated human milk oligosaccharides.
  • Wu S
  • Grimm R
  • German JB
  • Lebrilla CB
21133381 J Proteome Res 2011

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