Serveur d'exploration sur la glutarédoxine - Exploration (Accueil)

Index « KwdFr.i » - entrée « Lapins (MeSH) »
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Langue (anatomopathologie) < Lapins (MeSH) < Larve (MeSH)  Facettes :

List of bibliographic references indexed by Lapins (MeSH)

Number of relevant bibliographic references: 29.
[0-20] [0 - 20][0 - 29][20-28][20-40]
Ident.Authors (with country if any)Title
000186 (2019) Gabriela Nava [Mexique] ; Gerardo Maldonado [Mexique] ; Agustin Plancarte [Mexique]Cloning, expression, purification, and kinetic characterization of mitochondrial thioredoxin (TsTrx2), cytosolic thioredoxin (TsTrx1), and glutaredoxin (TsGrx1) from Taenia solium.
000239 (2018) Seon-Mi Yu [Corée du Sud] ; Yeon Joo Choi [Corée du Sud] ; Song Ja Kim [Corée du Sud]PEP-1-glutaredoxin-1 induces dedifferentiation of rabbit articular chondrocytes by the endoplasmic reticulum stress-dependent ERK-1/2 pathway and the endoplasmic reticulum stress-independent p38 kinase and PI-3 kinase pathways.
000398 (2016) Keyvan Karimi Galougahi [États-Unis] ; Chia-Chi Liu [Australie] ; Alvaro Garcia [Australie] ; Carmine Gentile [Australie] ; Natasha A. Fry [Australie] ; Elisha J. Hamilton [Australie] ; Clare L. Hawkins [Australie] ; Gemma A. Figtree [Australie]β3 Adrenergic Stimulation Restores Nitric Oxide/Redox Balance and Enhances Endothelial Function in Hyperglycemia.
000449 (2016) Alvaro Garcia [Australie] ; Chia-Chi Liu [Australie] ; Flemming Cornelius [Danemark] ; Ronald J. Clarke [Australie] ; Helge H. Rasmussen [Australie]Glutathionylation-Dependence of Na(+)-K(+)-Pump Currents Can Mimic Reduced Subsarcolemmal Na(+) Diffusion.
000486 (2015) Keyvan Karimi Galougahi [Australie] ; Chia-Chi Liu [Australie] ; Alvaro Garcia [Australie] ; Natasha A. Fry [Australie] ; Elisha J. Hamilton [Australie] ; Gemma A. Figtree [Australie] ; Helge H. Rasmussen [Australie]β3-Adrenoceptor activation relieves oxidative inhibition of the cardiac Na+-K+ pump in hyperglycemia induced by insulin receptor blockade.
000533 (2015) Narin Changklungmoa [Oman] ; Pornanan Kueakhai ; Kant Sangpairoj ; Pannigan Chaichanasak ; Wipaphorn Jaikua ; Suda Riengrojpitak ; Prasert Sobhon ; Kulathida ChaithirayanonMolecular cloning and characterization of Fasciola gigantica thioredoxin-glutathione reductase.
000648 (2014) Keyvan Karimi Galougahi [Australie] ; Chia-Chi Liu ; Carmine Gentile ; Cindy Kok ; Andrea Nunez ; Alvaro Garcia ; Natasha A S. Fry ; Michael J. Davies ; Clare L. Hawkins ; Helge H. Rasmussen ; Gemma A. FigtreeGlutathionylation mediates angiotensin II-induced eNOS uncoupling, amplifying NADPH oxidase-dependent endothelial dysfunction.
000727 (2013) Keyvan Karimi Galougahi [Australie] ; Chia-Chi Liu ; Alvaro Garcia ; Natasha A S. Fry ; Elisha J. Hamilton ; Helge H. Rasmussen ; Gemma A. FigtreeProtein kinase-dependent oxidative regulation of the cardiac Na+-K+ pump: evidence from in vivo and in vitro modulation of cell signalling.
000808 (2012) Chia-Chi Liu [Australie] ; Alvaro Garcia ; Yasser A. Mahmmoud ; Elisha J. Hamilton ; Keyvan Karimi Galougahi ; Natasha A S. Fry ; Gemma A. Figtree ; Flemming Cornelius ; Ronald J. Clarke ; Helge H. RasmussenSusceptibility of β1 Na+-K+ pump subunit to glutathionylation and oxidative inhibition depends on conformational state of pump.
000962 (2011) Gabriela Maggioli [Espagne] ; Fernando Silveira ; José M. Martín-Alonso ; Gustavo Salinas ; Carlos Carmona ; Francisco ParraA recombinant thioredoxin-glutathione reductase from Fasciola hepatica induces a protective response in rabbits.
000A87 (2009) Gemma A. Figtree [Australie] ; Chia-Chi Liu ; Stephanie Bibert ; Elisha J. Hamilton ; Alvaro Garcia ; Caroline N. White ; Karin K M. Chia ; Flemming Cornelius ; Kaethi Geering ; Helge H. RasmussenReversible oxidative modification: a key mechanism of Na+-K+ pump regulation.
000B82 (2008) Yuki Ogasawara [Japon] ; Masayo Funakoshi ; Kazuyuki IshiiPyruvate kinase is protected by glutathione-dependent redox balance in human red blood cells exposed to reactive oxygen species.
001064 (2000) F. Qiao [États-Unis] ; K. Xing ; M F LouModulation of lens glycolytic pathway by thioltransferase.
001076 (2000) P. De Simplicio [Italie] ; M. Dacasto ; M. Carletti ; F. Giannerini ; C. NebbiaChanges in hepatic and renal glutathione-dependent enzyme activities in rabbits and lambs subchronically treated with triphenyltin acetate.
001121 (1998) G M Wang [États-Unis] ; F. Wu ; N. Raghavachari ; J R ReddanThioltransferase is present in the lens epithelial cells as a highly oxidative stress-resistant enzyme.
001146 (1998) F. Wu [États-Unis] ; G M Wang ; N. Raghavachari ; M F LouDistribution of thioltransferase (glutaredoxin) in ocular tissues.
001164 (1997) D W Starke [États-Unis] ; Y. Chen ; C P Bapna ; E J Lesnefsky ; J J MieyalSensitivity of protein sulfhydryl repair enzymes to oxidative stress.
001180 (1997) J. Szederkényi [Allemagne] ; E. Komor ; C. SchobertCloning of the cDNA for glutaredoxin, an abundant sieve-tube exudate protein from Ricinus communis L. and characterisation of the glutathione-dependent thiol-reduction system in sieve tubes.
001211 (1995) A. Guagliardi [Italie] ; D. De Pascale ; R. Cannio ; V. Nobile ; S. Bartolucci ; M. RossiThe purification, cloning, and high level expression of a glutaredoxin-like protein from the hyperthermophilic archaeon Pyrococcus furiosus.
001236 (1994) T. Terada [Japon]Thioltransferase can utilize cysteamine as same as glutathione as a reductant during the restoration of cystamine-treated glucose 6-phosphate dehydrogenase activity.
001248 (1994) T. Terada [Japon] ; T. Hara ; H. Yazawa ; T. MizoguchiEffect of thioltransferase on the cystamine-activated fructose 1,6-bisphosphatase by its redox regulation.

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