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

Index « KwdFr.i » - entrée « Activation enzymatique (MeSH) »
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Activation des macrophages (immunologie) < Activation enzymatique (MeSH) < Activation enzymatique (effets des médicaments et des substances chimiques)  Facettes :

List of bibliographic references indexed by Activation enzymatique (MeSH)

Number of relevant bibliographic references: 35.
[0-20] [0 - 20][0 - 35][20-34][20-40]
Ident.Authors (with country if any)Title
000027 (2020) Linda Liedgens [Allemagne] ; Jannik Zimmermann [Allemagne] ; Lucas W Schenbach [Allemagne] ; Fabian Geissel [Allemagne] ; Hugo Laporte [Allemagne] ; Holger Gohlke [Allemagne] ; Bruce Morgan [Allemagne] ; Marcel Deponte [Allemagne]Quantitative assessment of the determinant structural differences between redox-active and inactive glutaredoxins.
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.
000493 (2015) Ehsan Shaykholeslam Esfahani [Iran] ; Azar Shahpiri [Iran]Thioredoxin h isoforms from rice are differentially reduced by NADPH/thioredoxin or GSH/glutaredoxin systems.
000598 (2014) Yajun Tang [République populaire de Chine] ; Jiahai Zhang ; Jiang Yu ; Ling Xu ; Jihui Wu ; Cong-Zhao Zhou ; Yunyu ShiStructure-guided activity enhancement and catalytic mechanism of yeast grx8.
000629 (2014) Vladimir Domkin [Suède] ; Andrei Chabes [Suède]Phosphines are ribonucleotide reductase reductants that act via C-terminal cysteines similar to thioredoxins and glutaredoxins.
000636 (2014) Jérémy Couturier [France] ; Hui-Chen Wu ; Tiphaine Dhalleine ; Henri Pégeot ; Damien Sudre ; José M. Gualberto ; Jean-Pierre Jacquot ; Frédéric Gaymard ; Florence Vignols ; Nicolas RouhierMonothiol glutaredoxin-BolA interactions: redox control of Arabidopsis thaliana BolA2 and SufE1.
000735 (2013) Bo Zhang [États-Unis] ; Sibali Bandyopadhyay ; Priyanka Shakamuri ; Sunil G. Naik ; Boi Hanh Huynh ; Jérémy Couturier ; Nicolas Rouhier ; Michael K. JohnsonMonothiol glutaredoxins can bind linear [Fe3S4]+ and [Fe4S4]2+ clusters in addition to [Fe2S2]2+ clusters: spectroscopic characterization and functional implications.
000785 (2013) Lars Br Utigam [Suède] ; Catrine Johansson ; Bastian Kubsch ; Michael A. Mcdonough ; Eckhard Bill ; Arne Holmgren ; Carsten BerndtAn unusual mode of iron-sulfur-cluster coordination in a teleost glutaredoxin.
000786 (2013) Yunfeng Du [États-Unis] ; Mohamad Navab ; Melody Shen ; James Hill ; Payam Pakbin ; Constantinos Sioutas ; Tzung K. Hsiai ; Rongsong LiAmbient ultrafine particles reduce endothelial nitric oxide production via S-glutathionylation of eNOS.
000796 (2012) Esther Jortzik [Allemagne] ; Katja BeckerThioredoxin and glutathione systems in Plasmodium falciparum.
000835 (2012) Jae Gyun Oh [Corée du Sud] ; Dongtak Jeong ; Hyeseon Cha ; Ji Myoung Kim ; Ekaterina Lifirsu ; Jihwa Kim ; Dong Kwon Yang ; Chang Sik Park ; Changwon Kho ; Soonyong Park ; Yung Joon Yoo ; Do Han Kim ; Jaetaek Kim ; Roger J. Hajjar ; Woo Jin ParkPICOT increases cardiac contractility by inhibiting PKCζ activity.
000887 (2012) Kamel Chibani [France] ; Lionel Tarrago ; José Manuel Gualberto ; Gunnar Wingsle ; Pascal Rey ; Jean-Pierre Jacquot ; Nicolas RouhierAtypical thioredoxins in poplar: the glutathione-dependent thioredoxin-like 2.1 supports the activity of target enzymes possessing a single redox active cysteine.
000B88 (2008) Norbert Nagy [États-Unis] ; Gautam Malik ; Arpad Tosaki ; Ye-Shih Ho ; Nilanjana Maulik ; Dipak K. DasOverexpression of glutaredoxin-2 reduces myocardial cell death by preventing both apoptosis and necrosis.
000C78 (2007) Jean-Philippe Reichheld [France] ; Mehdi Khafif ; Christophe Riondet ; Michel Droux ; Géraldine Bonnard ; Yves MeyerInactivation of thioredoxin reductases reveals a complex interplay between thioredoxin and glutathione pathways in Arabidopsis development.
000C86 (2007) Jing Wang [États-Unis] ; Shi Pan ; Bradford C. BerkGlutaredoxin mediates Akt and eNOS activation by flow in a glutathione reductase-dependent manner.
000D15 (2006) Nicolas Clavreul [États-Unis] ; Markus M. Bachschmid ; Xiuyun Hou ; Chaomei Shi ; Azra Idrizovic ; Yasuo Ido ; David Pimentel ; Richard A. CohenS-glutathiolation of p21ras by peroxynitrite mediates endothelial insulin resistance caused by oxidized low-density lipoprotein.
000D24 (2006) Sung-Kun Kim [États-Unis] ; Afroza Rahman ; Richard C. Conover ; Michael K. Johnson ; Jeremy T. Mason ; Varinnia Gomes ; Masakazu Hirasawa ; Mace L. Moore ; Thomas Leustek ; David B. KnaffProperties of the cysteine residues and the iron-sulfur cluster of the assimilatory 5'-adenylyl sulfate reductase from Enteromorpha intestinalis.
000D86 (2005) Seok J. Kwon [États-Unis] ; Jae J. Song ; Yong J. LeeSignal pathway of hypoxia-inducible factor-1alpha phosphorylation and its interaction with von Hippel-Lindau tumor suppressor protein during ischemia in MiaPaCa-2 pancreatic cancer cells.
000D91 (2005) Bob B. Buchanan [États-Unis] ; Yves BalmerRedox regulation: a broadening horizon.
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.
000E26 (2005) Christopher Horst Lillig [Suède] ; Carsten Berndt ; Olivia Vergnolle ; Maria Elisabet Lönn ; Christoph Hudemann ; Eckhard Bill ; Arne HolmgrenCharacterization of human glutaredoxin 2 as iron-sulfur protein: a possible role as redox sensor.

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