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

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1873-4243 < 1873-4596 < 1873-460X  Facettes :

List of bibliographic references indexed by 1873-4596

Number of relevant bibliographic references: 41.
Ident.Authors (with country if any)Title
000114 (2019) Xiaoyuan Ren [Suède] ; Sebastin M. Santhosh [Suède] ; Lucia Coppo [Suède] ; Fernando T. Ogata [Suède] ; Jun Lu [République populaire de Chine] ; Arne Holmgren [Suède]The combination of ascorbate and menadione causes cancer cell death by oxidative stress and replicative stress.
000124 (2019) Kwan Young Ko [Corée du Sud] ; Jea Hwang Lee [États-Unis] ; Jun Ki Jang [Corée du Sud] ; Yunjung Jin [Corée du Sud] ; Hyunwoo Kang [Corée du Sud] ; Ick Young Kim [Corée du Sud]S-Glutathionylation of mouse selenoprotein W prevents oxidative stress-induced cell death by blocking the formation of an intramolecular disulfide bond.
000145 (2019) Claudia Vanesa Piattoni [Uruguay] ; Florencia Sardi [Uruguay] ; Florencia Klein [Uruguay] ; Sergio Pantano [Uruguay] ; Mariela Bollati-Fogolin [Uruguay] ; Marcelo Comini [Uruguay]New red-shifted fluorescent biosensor for monitoring intracellular redox changes.
000180 (2019) Grace Ahuié Kouakou [Canada] ; Hugo Gagnon [Canada] ; Vincent Lacasse [Canada] ; J Richard Wagner [Canada] ; Stephen Naylor [États-Unis] ; Klaus Klarskov [Canada]Dehydroascorbic acid S-Thiolation of peptides and proteins: Role of homocysteine and glutathione.
000216 (2018) Guangshan Zhao [République populaire de Chine] ; Ximing Wu [République populaire de Chine] ; Pingping Chen [République populaire de Chine] ; Lingyun Zhang [République populaire de Chine] ; Chung S. Yang [États-Unis] ; Jinsong Zhang [République populaire de Chine]Selenium nanoparticles are more efficient than sodium selenite in producing reactive oxygen species and hyper-accumulation of selenium nanoparticles in cancer cells generates potent therapeutic effects.
000291 (2018) Quach Ngoc Tung [Allemagne] ; Nico Linzner [Allemagne] ; Vu Van Loi [Allemagne] ; Haike Antelmann [Allemagne]Application of genetically encoded redox biosensors to measure dynamic changes in the glutathione, bacillithiol and mycothiol redox potentials in pathogenic bacteria.
000303 (2017) Kristen J. Bubb [Australie] ; Cindy Kok [Australie] ; Owen Tang [Australie] ; Nathalie B. Rasko [Australie] ; Asa B. Birgisdottir [Norvège] ; Thomas Hansen [Australie] ; Rebecca Ritchie [Australie] ; Ravinay Bhindi [Australie] ; Scott A. Reisman [États-Unis] ; Colin Meyer [États-Unis] ; Keith Ward [États-Unis] ; Keyvan Karimi Galougahi [Australie] ; Gemma A. Figtree [Australie]The NRF2 activator DH404 attenuates adverse ventricular remodeling post-myocardial infarction by modifying redox signalling.
000307 (2017) Alexandra Müller [Allemagne] ; Jannis F. Schneider [Allemagne] ; Adriana Degrossoli [Allemagne] ; Nataliya Lupilova [Allemagne] ; Tobias P. Dick [Allemagne] ; Lars I. Leichert [Allemagne]Systematic in vitro assessment of responses of roGFP2-based probes to physiologically relevant oxidant species.
000320 (2017) Kristen J. Bubb [Australie] ; Asa Birna Birgisdottir [Norvège] ; Owen Tang [Australie] ; Thomas Hansen [Australie] ; Gemma A. Figtree [Australie]Redox modification of caveolar proteins in the cardiovascular system- role in cellular signalling and disease.
000322 (2017) Emiliano Panieri [Italie] ; Carlo Millia [Belgique] ; Massimo M. Santoro [Belgique]Real-time quantification of subcellular H2O2 and glutathione redox potential in living cardiovascular tissues.
000327 (2017) Marisa O'Brien [Canada] ; Julia Chalker [Canada] ; Liam Slade [Canada] ; Danielle Gardiner [Canada] ; Ryan J. Mailloux [Canada]Protein S-glutathionylation alters superoxide/hydrogen peroxide emission from pyruvate dehydrogenase complex.
000329 (2017) Nuria Pujol-Carrion [Espagne] ; Maria Angeles De La Torre-Ruiz [Espagne]Physical interaction between the MAPK Slt2 of the PKC1-MAPK pathway and Grx3/Grx4 glutaredoxins is required for the oxidative stress response in budding yeast.
000368 (2017) Xiaomei Li [République populaire de Chine] ; Xiaowen Li [République populaire de Chine] ; Qingjuan Shang [République populaire de Chine] ; Zongwei Gao [République populaire de Chine] ; Fabao Hao [République populaire de Chine] ; Hongjie Guo [République populaire de Chine] ; Chunbao Guo [République populaire de Chine]Fecal microbiota transplantation (FMT) could reverse the severity of experimental necrotizing enterocolitis (NEC) via oxidative stress modulation.
000376 (2017) Franziska Mohring [Allemagne] ; Mahsa Rahbari [Allemagne] ; Bernd Zechmann [États-Unis] ; Stefan Rahlfs [Allemagne] ; Jude M. Przyborski [Allemagne] ; Andreas J. Meyer [Allemagne] ; Katja Becker [Allemagne]Determination of glutathione redox potential and pH value in subcellular compartments of malaria parasites.
000422 (2016) Núria Vall-Llaura [Espagne] ; Gemma Reverter-Branchat [Espagne] ; Celia Vived [Espagne] ; Naomi Weertman [Espagne] ; María José Rodríguez-Colman [Espagne] ; Elisa Cabiscol [Espagne]Reversible glutathionylation of Sir2 by monothiol glutaredoxins Grx3/4 regulates stress resistance.
000454 (2016) Kelei Dong [République populaire de Chine] ; Meiling Wu [République populaire de Chine] ; Xiaomin Liu [République populaire de Chine] ; Yanjie Huang [République populaire de Chine] ; Dongyang Zhang [République populaire de Chine] ; Yiting Wang [République populaire de Chine] ; Liang-Jun Yan [États-Unis] ; Dongyun Shi [République populaire de Chine]Glutaredoxins concomitant with optimal ROS activate AMPK through S-glutathionylation to improve glucose metabolism in type 2 diabetes.
000510 (2015) Lucie Valek [Allemagne] ; Maike Kanngie Er [Allemagne] ; Annett H Ussler [Allemagne] ; Nitin Agarwal [Allemagne] ; Christopher Horst Lillig [Allemagne] ; Irmgard Tegeder [Allemagne]Redoxins in peripheral neurons after sciatic nerve injury.
000527 (2015) Khanh Pham [États-Unis] ; Rituraj Pal [États-Unis] ; Ying Qu [États-Unis] ; Xi Liu [République populaire de Chine] ; Han Yu [États-Unis] ; Stephen L. Shiao [États-Unis] ; Xinquan Wang [République populaire de Chine] ; E. O'Brian Smith [États-Unis] ; Xiaojiang Cui [États-Unis] ; George G. Rodney [États-Unis] ; Ninghui Cheng [États-Unis]Nuclear glutaredoxin 3 is critical for protection against oxidative stress-induced cell death.
000591 (2014) Jun Lu [Suède] ; Arne Holmgren [Suède]The thioredoxin antioxidant system.
000595 (2014) James D. Nolin [États-Unis] ; Jane E. Tully [États-Unis] ; Sidra M. Hoffman [États-Unis] ; Amy S. Guala [États-Unis] ; Jos L. Van Der Velden [États-Unis] ; Matthew E. Poynter [États-Unis] ; Albert Van Der Vliet [États-Unis] ; Vikas Anathy [États-Unis] ; Yvonne M W. Janssen-Heininger [États-Unis]The glutaredoxin/S-glutathionylation axis regulates interleukin-17A-induced proinflammatory responses in lung epithelial cells in association with S-glutathionylation of nuclear factor κB family proteins.
000625 (2014) Lisa Arodin [Suède] ; Antonio Miranda-Vizuete [Espagne] ; Peter Swoboda [Suède] ; Aristi P. Fernandes [Suède]Protective effects of the thioredoxin and glutaredoxin systems in dopamine-induced cell death.
000642 (2014) Marjolein Soethoudt [Nouvelle-Zélande] ; Alexander V. Peskin [Nouvelle-Zélande] ; Nina Dickerhof [Nouvelle-Zélande] ; Louise N. Paton [Nouvelle-Zélande] ; Paul E. Pace [Nouvelle-Zélande] ; Christine C. Winterbourn [Nouvelle-Zélande]Interaction of adenanthin with glutathione and thiol enzymes: selectivity for thioredoxin reductase and inhibition of peroxiredoxin recycling.
000656 (2014) Pengbo Yao [République populaire de Chine] ; Xiaobo Chen [République populaire de Chine] ; Yan Yan [République populaire de Chine] ; Feng Liu [République populaire de Chine] ; Yuanying Zhang [République populaire de Chine] ; Xingqi Guo [République populaire de Chine] ; Baohua Xu [République populaire de Chine]Glutaredoxin 1, glutaredoxin 2, thioredoxin 1, and thioredoxin peroxidase 3 play important roles in antioxidant defense in Apis cerana cerana.
000670 (2014) Faraz Ahmad [Inde] ; Prakash Nidadavolu [Inde] ; Lalitha Durgadoss [Inde] ; Vijayalakshmi Ravindranath [Inde]Critical cysteines in Akt1 regulate its activity and proteasomal degradation: implications for neurodegenerative diseases.
000719 (2013) Agata Banach-Latapy [France] ; Tiantian He [France] ; Michèle Dardalhon [France] ; Laurence Vernis [France] ; Roland Chanet [France] ; Meng-Er Huang [France]Redox-sensitive YFP sensors for monitoring dynamic compartment-specific glutathione redox state.
000724 (2013) Diego G. Arias [Argentine] ; Vanina E. Marquez ; María L. Chiribao ; Fernanda R. Gadelha ; Carlos Robello ; Alberto A. Iglesias ; Sergio A. GuerreroRedox metabolism in Trypanosoma cruzi: functional characterization of tryparedoxins revisited.
000744 (2013) Chi-Ming Wong [États-Unis] ; Lucia Marcocci [Italie] ; Dividutta Das [États-Unis] ; Xinhong Wang [République populaire de Chine] ; Haibei Luo [États-Unis] ; Makhosazane Zungu-Edmondson [États-Unis] ; Yuichiro J. Suzuki [États-Unis]Mechanism of protein decarbonylation.
000756 (2013) Aaron L. Mclain [États-Unis] ; Peter J. Cormier [États-Unis] ; Michael Kinter [États-Unis] ; Luke I. Szweda [États-Unis]Glutathionylation of α-ketoglutarate dehydrogenase: the chemical nature and relative susceptibility of the cofactor lipoic acid to modification.
000764 (2013) Wenbo Tang [États-Unis] ; Amy R. Bentley ; Stephen B. Kritchevsky ; Tamara B. Harris ; Anne B. Newman ; Douglas C. Bauer ; Bernd Meibohm ; Patricia A. CassanoGenetic variation in antioxidant enzymes, cigarette smoking, and longitudinal change in lung function.
000787 (2013) Yan Liang [États-Unis] ; Frank L. Harris [États-Unis] ; Dean P. Jones [États-Unis] ; Lou Ann S. Brown [États-Unis]Alcohol induces mitochondrial redox imbalance in alveolar macrophages.
000803 (2012) Yuan-Chun Lin [Taïwan] ; Guan-Da Huang ; Chia-Wen Hsieh ; Being-Sun WungThe glutathionylation of p65 modulates NF-κB activity in 15-deoxy-Δ¹²,¹⁴-prostaglandin J₂-treated endothelial cells.
000836 (2012) Gemma A. Figtree [Australie] ; Galougahi Keyvan Karimi [Australie] ; Chia-Chi Liu [Australie] ; Helge H. Rasmussen [Australie]Oxidative regulation of the Na(+)-K(+) pump in the cardiovascular system.
000850 (2012) Young-Mee Oh [Corée du Sud] ; Seung-Keun Hong ; Jeong-Tae Yeon ; Mee-Kyung Cha ; Il-Han KimInteraction between Saccharomyces cerevisiae glutaredoxin 5 and SPT10 and their in vivo functions.
000855 (2012) Justin R. Prigge [États-Unis] ; Sofi Eriksson ; Sonya V. Iverson ; Tesia A. Meade ; Mario R. Capecchi ; Elias S J. Arnér ; Edward E. SchmidtHepatocyte DNA replication in growing liver requires either glutathione or a single allele of txnrd1.
000917 (2011) José R. Godoy [Allemagne] ; Sabrina Oesteritz ; Eva-Maria Hanschmann ; Wymke Ockenga ; Waltraud Ackermann ; Christopher Horst LilligSegment-specific overexpression of redoxins after renal ischemia and reperfusion: protective roles of glutaredoxin 2, peroxiredoxin 3, and peroxiredoxin 6.
000947 (2011) Hongli Wu [États-Unis] ; Liren Lin ; Frank Giblin ; Ye-Sheh Ho ; Marjorie F. LouGlutaredoxin 2 knockout increases sensitivity to oxidative stress in mouse lens epithelial cells.
000954 (2011) Helen Tang [Australie] ; Helena M. Viola ; Aleksandra Filipovska ; Livia C. HoolCa(v)1.2 calcium channel is glutathionylated during oxidative stress in guinea pig and ischemic human heart.
000960 (2011) Scott W. Aesif [États-Unis] ; Ine Kuipers ; Jos Van Der Velden ; Jane E. Tully ; Amy S. Guala ; Vikas Anathy ; Juliana I. Sheely ; Niki L. Reynaert ; Emiel F M. Wouters ; Albert Van Der Vliet ; Yvonne M W. Janssen-HeiningerActivation of the glutaredoxin-1 gene by nuclear factor κB enhances signaling.
000986 (2010) Anita Ayer [Australie] ; Shi-Xiong Tan ; Chris M. Grant ; Andreas J. Meyer ; Ian W. Dawes ; Gabriel G. PerroneThe critical role of glutathione in maintenance of the mitochondrial genome.
000A56 (2010) Markus M. Bachschmid [États-Unis] ; Shanqin Xu ; Karlene A. Maitland-Toolan ; Ye-Shih Ho ; Richard A. Cohen ; Reiko MatsuiAttenuated cardiovascular hypertrophy and oxidant generation in response to angiotensin II infusion in glutaredoxin-1 knockout mice.
000B54 (2009) Irene M. Sotirchos [Australie] ; Amanda L. Hudson ; John Ellis ; Mary W. DaveyA unique thioredoxin of the parasitic nematode Haemonchus contortus with glutaredoxin activity.

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