GlyCosmos PubAnnotations

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

Displaying entries 5476 - 5500 of 24862 in total
Title ▲ Authors PubMed ID Source Publication Year
Cu ++ -dependent thiol stimulation of glucose metabolism in white fat cells.
  • Czech MP
  • Fain JN
4631317 J Biol Chem 1972
Cu(I)-dependent biogenesis of the galactose oxidase redox cofactor.
  • Whittaker MM
  • Whittaker JW
12672814 J Biol Chem 2003
Cu, Pt, and Pd complexes of the 3-deoxy-1,2-bis(thiosemicarbazone) derived from D-glucose.
  • Horton D
  • Varela O
11072850 Carbohydr Res 2000
CuAAC click chemistry with N-propargyl 1,5-dideoxy-1,5-imino-D-gulitol and N-propargyl 1,6-dideoxy-1,6-imino-D-mannitol provides access to triazole-linked piperidine and azepane pseudo-disaccharide iminosugars displaying glycosidase inhibitory properties.
  • Zamoner LO
  • Aragão-Leoneti V
  • Mantoani SP
  • Rugen MD
  • Nepogodiev SA
  • Field RA
  • Carvalho I
27160849 Carbohydr Res 2016
CuAAC mediated synthesis of cyclen cored glycodendrimers of high sugar tethers at low generation.
  • Agrahari AK
  • Jaiswal MK
  • Yadav MS
  • Tiwari VK
34329845 Carbohydr Res 2021
Culture from mouse bone marrow of a subclass of mast cells possessing a distinct chondroitin sulfate proteoglycan with glycosaminoglycans rich in N-acetylgalactosamine-4,6-disulfate.
  • Razin E
  • Stevens RL
  • Akiyama F
  • Schmid K
  • Austen KF
6806269 J Biol Chem 1982
Current perspectives on the families of glycoside hydrolases of Mycobacterium tuberculosis: their importance and prospects for assigning function to unknowns.
  • van Wyk N
  • Drancourt M
  • Henrissat B
  • Kremer L
27697825 Glycobiology 2017
Current trends in the structure-activity relationships of sialyltransferases.
  • Audry M
  • Jeanneau C
  • Imberty A
  • Harduin-Lepers A
  • Delannoy P
  • Breton C
21098518 Glycobiology 2011
Cyclic ADP-ribose and inositol 1,4,5-trisphosphate as alternate second messengers for intracellular Ca2+ mobilization in normal and diabetic beta-cells.
  • Takasawa S
  • Akiyama T
  • Nata K
  • Kuroki M
  • Tohgo A
  • Noguchi N
  • Kobayashi S
  • Kato I
  • Katada T
  • Okamoto H
9446548 J Biol Chem 1998
Cyclic AMP acutely stimulates translocation of the major insulin-regulatable glucose transporter GLUT4.
  • Kelada AS
  • Macaulay SL
  • Proietto J
1313029 J Biol Chem 1992
Cyclic AMP as a determinant for glucose induction of fast Ca2+ oscillations in isolated pancreatic beta-cells.
  • Grapengiesser E
  • Gylfe E
  • Hellman B
1648087 J Biol Chem 1991
Cyclic AMP phosphodiesterase 4D (PDE4D) Tethers EPAC1 in a vascular endothelial cadherin (VE-Cad)-based signaling complex and controls cAMP-mediated vascular permeability.
  • Rampersad SN
  • Ovens JD
  • Huston E
  • Umana MB
  • Wilson LS
  • Netherton SJ
  • Lynch MJ
  • Baillie GS
  • Houslay MD
  • Maurice DH
20732872 J Biol Chem 2010
Cyclic AMP selectively increases renin mRNA stability in cultured juxtaglomerular granular cells.
  • Chen M
  • Schnermann J
  • Smart AM
  • Brosius FC
  • Killen PD
  • Briggs JP
8226960 J Biol Chem 1993
Cyclic AMP triggers large [Ca2+]i oscillations in glucose-stimulated beta-cells from ob/ob mice.
  • Fournier L
  • Whitfield JF
  • Schwartz JL
  • Bégin-Heick N
8288569 J Biol Chem 1994
Cyclic AMP-dependent protein phosphorylation in canine renal brush-border membrane vesicles is associated with decreased phosphate transport.
  • Hammerman MR
  • Hruska KA
6274874 J Biol Chem 1982
Cyclic AMP-elevating Agents Promote Cumulus Cell Survival and Hyaluronan Matrix Stability, Thereby Prolonging the Time of Mouse Oocyte Fertilizability.
  • Di Giacomo M
  • Camaioni A
  • Klinger FG
  • Bonfiglio R
  • Salustri A
26694612 J Biol Chem 2016
Cyclic adenosine 3':5'-monophosphate and the induction of deoxyribonucleic acid synthesis in liver.
  • Short J
  • Tsukada K
  • Rudert WA
  • Lieberman I
165178 J Biol Chem 1975
Cyclic adenosine monophosphate-dependent phosphorylation of specific fat cell membrane proteins by an endogenous membrane-bound protein kinase. Possible involvement in the regulation of insulin-stimulated glucose transport.
  • Chang KJ
  • Marcus NA
  • Cuatrecasas P
4371070 J Biol Chem 1974
Cyclic di-AMP homeostasis in bacillus subtilis: both lack and high level accumulation of the nucleotide are detrimental for cell growth.
  • Mehne FM
  • Gunka K
  • Eilers H
  • Herzberg C
  • Kaever V
  • Stülke J
23192352 J Biol Chem 2013
Cyclic diGMP regulates production of sortase substrates of Clostridium difficile and their surface exposure through ZmpI protease-mediated cleavage.
  • Peltier J
  • Shaw HA
  • Couchman EC
  • Dawson LF
  • Yu L
  • Choudhary JS
  • Kaever V
  • Wren BW
  • Fairweather NF
26283789 J Biol Chem 2015
Cyclic nucleotide regulation of Na+/glucose cotransporter (SGLT1) mRNA stability. Interaction of a nucleocytoplasmic protein with a regulatory domain in the 3'-untranslated region critical for stabilization.
  • Lee WY
  • Loflin P
  • Clancey CJ
  • Peng H
  • Lever JE
10950955 J Biol Chem 2000
Cyclin D3 mediates synthesis of a hyaluronan matrix that is adhesive for monocytes in mesangial cells stimulated to divide in hyperglycemic medium.
  • Ren J
  • Hascall VC
  • Wang A
19276076 J Biol Chem 2009
Cyclin E and SV40 small T antigen cooperate to bypass quiescence and contribute to transformation by activating CDK2 in human fibroblasts.
  • Sotillo E
  • Garriga J
  • Kurimchak A
  • Graña X
18276582 J Biol Chem 2008
Cyclin-dependent kinase 5 (Cdk5) activation domain of neuronal Cdk5 activator. Evidence of the existence of cyclin fold in neuronal Cdk5a activator.
  • Tang D
  • Chun AC
  • Zhang M
  • Wang JH
9139676 J Biol Chem 1997
Cyclin-dependent kinase 5 promotes insulin exocytosis.
  • Lilja L
  • Yang SN
  • Webb DL
  • Juntti-Berggren L
  • Berggren PO
  • Bark C
11443123 J Biol Chem 2001

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