GlyCosmos PubAnnotations

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

Displaying entries 21526 - 21550 of 24862 in total
Title ▼ Authors PubMed ID Source Publication Year
CYP98A3 from Arabidopsis thaliana is a 3'-hydroxylase of phenolic esters, a missing link in the phenylpropanoid pathway.
  • Schoch G
  • Goepfert S
  • Morant M
  • Hehn A
  • Meyer D
  • Ullmann P
  • Werck-Reichhart D
11429408 J Biol Chem 2001
CXCR3 and heparin binding sites of the chemokine IP-10 (CXCL10).
  • Campanella GS
  • Lee EM
  • Sun J
  • Luster AD
12571234 J Biol Chem 2003
CXCL1/MGSA Is a Novel Glycosaminoglycan (GAG)-binding Chemokine: STRUCTURAL EVIDENCE FOR TWO DISTINCT NON-OVERLAPPING BINDING DOMAINS.
  • Sepuru KM
  • Rajarathnam K
26721883 J Biol Chem 2016
CXC chemokines connective tissue activating peptide-III and neutrophil activating peptide-2 are heparin/heparan sulfate-degrading enzymes.
  • Hoogewerf AJ
  • Leone JW
  • Reardon IM
  • Howe WJ
  • Asa D
  • Heinrikson RL
  • Ledbetter SR
7852412 J Biol Chem 1995
CUX2 protein functions as an accessory factor in the repair of oxidative DNA damage.
  • Pal R
  • Ramdzan ZM
  • Kaur S
  • Duquette PM
  • Marcotte R
  • Leduy L
  • Davoudi S
  • Lamarche-Vane N
  • Iulianella A
  • Nepveu A
26221032 J Biol Chem 2015
CTRP9 protein protects against myocardial injury following ischemia-reperfusion through AMP-activated protein kinase (AMPK)-dependent mechanism.
  • Kambara T
  • Ohashi K
  • Shibata R
  • Ogura Y
  • Maruyama S
  • Enomoto T
  • Uemura Y
  • Shimizu Y
  • Yuasa D
  • Matsuo K
  • Miyabe M
  • Kataoka Y
  • Murohara T
  • Ouchi N
22514273 J Biol Chem 2012
CTRP1 protein enhances fatty acid oxidation via AMP-activated protein kinase (AMPK) activation and acetyl-CoA carboxylase (ACC) inhibition.
  • Peterson JM
  • Aja S
  • Wei Z
  • Wong GW
22086915 J Biol Chem 2012
CTG/CAG repeat instability is modulated by the levels of human DNA ligase I and its interaction with proliferating cell nuclear antigen: a distinction between replication and slipped-DNA repair.
  • López Castel A
  • Tomkinson AE
  • Pearson CE
19628465 J Biol Chem 2009
CST-II's recognition domain for acceptor substrates in α-(2→8)-sialylations.
  • Li W
  • Zhang P
  • Zuccolo AJ
  • Zheng RB
  • Ling CC
21658684 Carbohydr Res 2011
CRMP2 protein SUMOylation modulates NaV1.7 channel trafficking.
  • Dustrude ET
  • Wilson SM
  • Ju W
  • Xiao Y
  • Khanna R
23836888 J Biol Chem 2013
CRISPR/Cas9 and glycomics tools for Toxoplasma glycobiology.
  • Gas-Pascual E
  • Ichikawa HT
  • Sheikh MO
  • Serji MI
  • Deng B
  • Mandalasi M
  • Bandini G
  • Samuelson J
  • Wells L
  • West CM
30463938 J Biol Chem 2019
CREB-binding protein is a transcriptional coactivator for hepatocyte nuclear factor-4 and enhances apolipoprotein gene expression.
  • Dell H
  • Hadzopoulou-Cladaras M
10085149 J Biol Chem 1999
COUP-TF1 antagonizes Nkx2.5-mediated activation of the calreticulin gene during cardiac development.
  • Guo L
  • Lynch J
  • Nakamura K
  • Fliegel L
  • Kasahara H
  • Izumo S
  • Komuro I
  • Agellon LB
  • Michalak M
11106640 J Biol Chem 2001
COP1 functions as a FoxO1 ubiquitin E3 ligase to regulate FoxO1-mediated gene expression.
  • Kato S
  • Ding J
  • Pisck E
  • Jhala US
  • Du K
18815134 J Biol Chem 2008
COOH-terminal disruption of lipoprotein lipase in mice is lethal in homozygotes, but heterozygotes have elevated triglycerides and impaired enzyme activity.
  • Coleman T
  • Seip RL
  • Gimble JM
  • Lee D
  • Maeda N
  • Semenkovich CF
7759497 J Biol Chem 1995
CONTROL ASPECTS OF URIDINE 5'-DIPHOSPHATE GLUCOSE AND THYMIDINE 5'-DIPHOSPHATE GLUCOSE SYNTHESIS BY MICROBIAL ENZYMES.
  • BERNSTEIN RL
  • ROBBINS PW
14253441 J Biol Chem 1965
COM crystals activate the p38 mitogen-activated protein kinase signal transduction pathway in renal epithelial cells.
  • Koul HK
  • Menon M
  • Chaturvedi LS
  • Koul S
  • Sekhon A
  • Bhandari A
  • Huang M
12121971 J Biol Chem 2002
CO2/HCO3(-)- and calcium-regulated soluble adenylyl cyclase as a physiological ATP sensor.
  • Zippin JH
  • Chen Y
  • Straub SG
  • Hess KC
  • Diaz A
  • Lee D
  • Tso P
  • Holz GG
  • Sharp GW
  • Levin LR
  • Buck J
24100033 J Biol Chem 2013
CO2 adducts as reactive analogues of carboxylate substrates for aconitase and other enzymes of carbohydrate metabolism.
  • Porter DJ
  • Alston TA
  • Bright HJ
3106357 J Biol Chem 1987
CMP-NeuNAc:poly-alpha-2,8-sialosyl sialyltransferase and the biosynthesis of polysialosyl units in neural cell adhesion molecules.
  • McCoy RD
  • Vimr ER
  • Troy FA
4044605 J Biol Chem 1985
CMP-NeuAc:(NeuAc alpha 2-->8)n (colominic acid) sialyltransferase activity in rat brain and in tumour cells that express polysialic acid on neural cell adhesion molecules.
  • Easton EW
  • Schiphorst WE
  • Koeleman CA
  • Michalides RJ
  • Van Den Eijnden DH
8748161 Glycoconj J 1995
CMP-N-acetylneuraminic acid synthetase of Escherichia coli: high level expression, purification and use in the enzymatic synthesis of CMP-N-acetylneuraminic acid and CMP-neuraminic acid derivatives.
  • Shames SL
  • Simon ES
  • Christopher CW
  • Schmid W
  • Whitesides GM
  • Yang LL
1823161 Glycobiology 1991
CMP-N-acetylneuraminic acid synthetase from Escherichia coli K1 is a bifunctional enzyme: identification of minimal catalytic domain for synthetase activity and novel functional domain for platelet-activating factor acetylhydrolase activity.
  • Liu G
  • Jin C
  • Jin C
14960566 J Biol Chem 2004
CMP-N-acetylneuraminic acid hydroxylase activity determines the wheat germ agglutinin-binding phenotype in two mutants of the lymphoma cell line MDAY-D2.
  • Shaw L
  • Yousefi S
  • Dennis JW
  • Schauer R
1841685 Glycoconj J 1991
CMP substitutions preferentially inhibit polysialic acid synthesis.
  • Miyazaki T
  • Angata K
  • Seeberger PH
  • Hindsgaul O
  • Fukuda M
18077550 Glycobiology 2008

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