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

Index « Titre (en) » - entrée « reducing »
Attention, ce site est en cours de développement !
Attention, site généré par des moyens informatiques à partir de corpus bruts.
Les informations ne sont donc pas validées.
reduces < reducing < reductant  Facettes :

List of bibliographic references indexed by reducing

Number of relevant bibliographic references: 17.
Ident.Authors (with country if any)Title
000039 (2020) Anil Kumar [Inde] ; Arvind Kumar Dubey [Inde] ; Varun Kumar [Inde] ; Mohd Akram Ansari [Inde] ; Shiv Narayan [Inde] ; Meenakshi [Inde] ; Sanoj Kumar [Inde] ; Vivek Pandey [Inde] ; Pramod Arvind Shirke [Inde] ; Veena Pande [Inde] ; Indraneel Sanyal [Inde]Over-expression of chickpea glutaredoxin (CaGrx) provides tolerance to heavy metals by reducing metal accumulation and improved physiological and antioxidant defence system.
000093 (2020) Noriyuki Nagahara [Japon]Activation of 3-Mercaptopyruvate Sulfurtransferase by Glutaredoxin Reducing System.
000177 (2019) Joseph J. Braymer [Allemagne] ; Martin Stümpfig [Allemagne] ; Stefanie Thelen [Allemagne] ; Ulrich Mühlenhoff [Allemagne] ; Roland Lill [Allemagne]Depletion of thiol reducing capacity impairs cytosolic but not mitochondrial iron-sulfur protein assembly machineries.
000222 (2018) Vikas Anathy [États-Unis] ; Karolyn G. Lahue [États-Unis] ; David G. Chapman [États-Unis] ; Shi B. Chia [États-Unis] ; Dylan T. Casey [États-Unis] ; Reem Aboushousha [États-Unis] ; Jos L J. Van Der Velden [États-Unis] ; Evan Elko [États-Unis] ; Sidra M. Hoffman [États-Unis] ; David H. Mcmillan [États-Unis] ; Jane T. Jones [États-Unis] ; James D. Nolin [États-Unis] ; Sarah Abdalla [États-Unis] ; Robert Schneider [États-Unis] ; David J. Seward [États-Unis] ; Elle C. Roberson [États-Unis] ; Matthew D. Liptak [États-Unis] ; Morgan E. Cousins [États-Unis] ; Kelly J. Butnor [États-Unis] ; Douglas J. Taatjes [États-Unis] ; Ralph C. Budd [États-Unis] ; Charles G. Irvin [États-Unis] ; Ye-Shih Ho [États-Unis] ; Razq Hakem [Canada] ; Kevin K. Brown [États-Unis] ; Reiko Matsui [États-Unis] ; Markus M. Bachschmid [États-Unis] ; Jose L. Gomez [États-Unis] ; Naftali Kaminski [États-Unis] ; Albert Van Der Vliet [États-Unis] ; Yvonne M W. Janssen-Heininger [États-Unis]Reducing protein oxidation reverses lung fibrosis.
000290 (2018) Arvind Kumar Dubey [Inde] ; Navin Kumar [Inde] ; Ruma Ranjan [Inde] ; Ambedkar Gautam [Inde] ; Veena Pande [Inde] ; Indraneel Sanyal [Inde] ; Shekhar Mallick [Inde]Application of glycine reduces arsenic accumulation and toxicity in Oryza sativa L. by reducing the expression of silicon transporter genes.
000331 (2017) Jihwa Kim [Corée du Sud] ; Jooyeon Kim [Corée du Sud] ; Hyun Kook [Corée du Sud] ; Woo Jin Park [Corée du Sud]PICOT alleviates myocardial ischemia-reperfusion injury by reducing intracellular levels of reactive oxygen species.
000539 (2015) Kerstin Kojer [Allemagne] ; Valentina Peleh [Allemagne] ; Gaetano Calabrese [Allemagne] ; Johannes M. Herrmann [Allemagne] ; Jan Riemer [Allemagne]Kinetic control by limiting glutaredoxin amounts enables thiol oxidation in the reducing mitochondrial intermembrane space.
000677 (2014) Kerstin Kojer [Allemagne] ; Jan Riemer [Allemagne]Balancing oxidative protein folding: the influences of reducing pathways on disulfide bond formation.
000987 (2010) Kamel Chibani [France] ; Jérémy Couturier ; Benjamin Selles ; Jean-Pierre Jacquot ; Nicolas RouhierThe chloroplastic thiol reducing systems: dual functions in the regulation of carbohydrate metabolism and regeneration of antioxidant enzymes, emphasis on the poplar redoxin equipment.
000C07 (2008) Melinda J. Faulkner [États-Unis] ; Karthik Veeravalli ; Stéphanie Gon ; George Georgiou ; Jon BeckwithFunctional plasticity of a peroxidase allows evolution of diverse disulfide-reducing pathways.
000C47 (2007) Amir Porat [États-Unis] ; Christopher Horst Lillig ; Catrine Johansson ; Aristi Potamitou Fernandes ; Lennart Nilsson ; Arne Holmgren ; Jon BeckwithThe reducing activity of glutaredoxin 3 toward cytoplasmic substrate proteins is restricted by methionine 43.
000D09 (2006) Norman Metanis [Israël] ; Ehud Keinan ; Philip E. DawsonSynthetic seleno-glutaredoxin 3 analogues are highly reducing oxidoreductases with enhanced catalytic efficiency.
000E11 (2005) Diyaa Rachdan [Royaume-Uni] ; Marjorie F. Lou ; John J. HardingGlutathione reductase from human cataract lenses can be revived by reducing agents and by a molecular chaperone, alpha-crystallin.
000E65 (2004) N. Rouhier [France] ; E. Gelhaye ; J-P JacquotPlant glutaredoxins: still mysterious reducing systems.
001003 (2002) C Michael Reynolds [États-Unis] ; Jacques Meyer ; Leslie B. PooleAn NADH-dependent bacterial thioredoxin reductase-like protein in conjunction with a glutaredoxin homologue form a unique peroxiredoxin (AhpC) reducing system in Clostridium pasteurianum.
001161 (1997) W A Prinz [États-Unis] ; F. Aslund ; A. Holmgren ; J. BeckwithThe role of the thioredoxin and glutaredoxin pathways in reducing protein disulfide bonds in the Escherichia coli cytoplasm.
001196 (1996) J B Park [États-Unis] ; M. LevinePurification, cloning and expression of dehydroascorbic acid-reducing activity from human neutrophils: identification as glutaredoxin.

Pour manipuler ce document sous Unix (Dilib)

EXPLOR_STEP=$WICRI_ROOT/Bois/explor/GlutaredoxinV1/Data/Main/Exploration
HfdIndexSelect -h $EXPLOR_AREA/Data/Main/Exploration/Title.i -k "reducing" 
HfdIndexSelect -h $EXPLOR_AREA/Data/Main/Exploration/Title.i  \
                -Sk "reducing" \
         | HfdSelect -Kh $EXPLOR_AREA/Data/Main/Exploration/biblio.hfd 

Pour mettre un lien sur cette page dans le réseau Wicri

{{Explor lien
   |wiki=    Bois
   |area=    GlutaredoxinV1
   |flux=    Main
   |étape=   Exploration
   |type=    indexItem
   |index=    Title.i
   |clé=    reducing
}}

Wicri

This area was generated with Dilib version V0.6.37.
Data generation: Wed Nov 18 15:13:42 2020. Site generation: Wed Nov 18 15:16:12 2020