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For: Sengupta R, Holmgren A. Thioredoxin and glutaredoxin-mediated redox regulation of ribonucleotide reductase. World J Biol Chem 2014; 5(1): 68-74 [PMID: 24600515 DOI: 10.4331/wjbc.v5.i1.68]
URL: https://www.wjgnet.com/1949-8454/full/v5/i1/68.htm
Number Citing Articles
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Vera Bischoff, Boyke Bunk, Jan P Meier-Kolthoff, Cathrin Spröer, Anja Poehlein, Marco Dogs, Mary Nguyen, Jörn Petersen, Rolf Daniel, Jörg Overmann, Markus Göker, Meinhard Simon, Thorsten Brinkhoff, Cristina Moraru. Cobaviruses – a new globally distributed phage group infecting Rhodobacteraceae in marine ecosystemsThe ISME Journal 2019; 13(6): 1404 doi: 10.1038/s41396-019-0362-7
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Sebastin Santosh Martin, Fabio Rabelo Melo, Gunnar Pejler. The Absence of Tryptase Mcpt6 Causes Elevated Cellular Stress in Response to Modulation of the Histone Acetylation Status in Mast CellsCells 2019; 8(10): 1190 doi: 10.3390/cells8101190
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Hongyu Li, Jing Hu, Shuhong Wu, Li Wang, Xiaobo Cao, Xiaoshan Zhang, Bingbing Dai, Mengru Cao, Ruping Shao, Ran Zhang, Mourad Majidi, Lin Ji, John V. Heymach, Michael Wang, Shiyang Pan, John Minna, Reza J. Mehran, Stephen G. Swisher, Jack A. Roth, Bingliang Fang. Auranofin-mediated inhibition of PI3K/AKT/mTOR axis and anticancer activity in non-small cell lung cancer cellsOncotarget 2016; 7(3): 3548 doi: 10.18632/oncotarget.6516
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Colin G Miller, Edward E Schmidt. Disulfide reductase systems in liverBritish Journal of Pharmacology 2019; 176(4): 532 doi: 10.1111/bph.14498
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Yi Fang, Ting Xie, Ning Xue, Qing Kuang, Zheng Wei, Mingyu Liang, Xiaoqiang Ding, Jaideep Banerjee. miR‐382 Contributes to Renal Tubulointerstitial Fibrosis by Downregulating HSPD1Oxidative Medicine and Cellular Longevity 2017; 2017(1) doi: 10.1155/2017/4708516
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Subhash C. Bihani, Lata Panicker, Yogendra S. Rajpurohit, Hari S. Misra, Vinay Kumar. drFrnE Represents a Hitherto Unknown Class of Eubacterial Cytoplasmic Disulfide Oxido-ReductasesAntioxidants & Redox Signaling 2018; 28(4): 296 doi: 10.1089/ars.2016.6960
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Ethan Will Taylor, Wilson Radding. Understanding Selenium and Glutathione as Antiviral Factors in COVID-19: Does the Viral Mpro Protease Target Host Selenoproteins and Glutathione Synthesis?Frontiers in Nutrition 2020; 7 doi: 10.3389/fnut.2020.00143
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Valérie Delorme-Hinoux, Sajid A.K. Bangash, Andreas J. Meyer, Jean-Philippe Reichheld. Nuclear thiol redox systems in plantsPlant Science 2016; 243: 84 doi: 10.1016/j.plantsci.2015.12.002
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Chandra Bhushan Prasad, Adrian Oo, Yujie Liu, Zhaojun Qiu, Yaogang Zhong, Na Li, Deepika Singh, Xiwen Xin, Young-Jae Cho, Zaibo Li, Xiaoli Zhang, Chunhong Yan, Qingfei Zheng, Qi-En Wang, Deliang Guo, Baek Kim, Junran Zhang. The thioredoxin system determines CHK1 inhibitor sensitivity via redox-mediated regulation of ribonucleotide reductase activityNature Communications 2024; 15(1) doi: 10.1038/s41467-024-48076-9
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Lisa R. Knoke, Lars I. Leichert. Global approaches for protein thiol redox state detectionCurrent Opinion in Chemical Biology 2023; 77: 102390 doi: 10.1016/j.cbpa.2023.102390
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Surupa Chakraborty, Prerona Mukherjee, Rajib Sengupta. Ribonucleotide reductase: Implications of thiol S-nitrosylation and tyrosine nitration for different subunitsNitric Oxide 2022; 127: 26 doi: 10.1016/j.niox.2022.07.002
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Théo Le Moigne, Nicolas D. Boisset, Félix de Carpentier, Pierre Crozet, Antoine Danon, Julien Henri, Christophe H. Marchand, Stéphane D. Lemaire, Xenie Johnson. The Chlamydomonas Sourcebook2023; : 273 doi: 10.1016/B978-0-12-821430-5.00016-X
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Dany Graindorge, Sylvain Martineau, Christelle Machon, Philippe Arnoux, Jérôme Guitton, Stefania Francesconi, Céline Frochot, Evelyne Sage, Pierre-Marie Girard, Robert S. Weiss. Singlet Oxygen-Mediated Oxidation during UVA Radiation Alters the Dynamic of Genomic DNA ReplicationPLOS ONE 2015; 10(10): e0140645 doi: 10.1371/journal.pone.0140645
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Geir Bjørklund, Lili Zou, Jun Wang, Christos T. Chasapis, Massimiliano Peana. Thioredoxin reductase as a pharmacological targetPharmacological Research 2021; 174: 105854 doi: 10.1016/j.phrs.2021.105854
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Rui Sun, Jie Kang, Yanyang Sun, Xiaolei Ji, Jingping Ge, Wenxiang Ping. Action mechanism of Bacillus subtilis driving the production of Paracin 1.7: Based on transcriptome-binding SPR analysisLWT 2024; 191: 115617 doi: 10.1016/j.lwt.2023.115617
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Joshua P. Fessel, William M. Oldham. Pyridine Dinucleotides from Molecules to ManAntioxidants & Redox Signaling 2018; 28(3): 180 doi: 10.1089/ars.2017.7120
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Mathias Tesson, Giorgio Anselmi, Caitlin Bell, Robert Mairs. Cell cycle specific radiosensitisation by the disulfiram and copper complexOncotarget 2017; 8(39): 65900 doi: 10.18632/oncotarget.19539
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Vilma Pérez, Martha Hengst, Lenka Kurte, Cristina Dorador, Wade H. Jeffrey, Ruddy Wattiez, Veronica Molina, Sabine Matallana-Surget. Bacterial Survival under Extreme UV Radiation: A Comparative Proteomics Study of Rhodobacter sp., Isolated from High Altitude Wetlands in ChileFrontiers in Microbiology 2017; 8 doi: 10.3389/fmicb.2017.01173
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Junichi Fujii. Redox remodeling of central metabolism as a driving force for cellular protection, proliferation, differentiation, and dysfunctionFree Radical Research 2024; : 1 doi: 10.1080/10715762.2024.2407147
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Leslie B. Poole. The basics of thiols and cysteines in redox biology and chemistryFree Radical Biology and Medicine 2015; 80: 148 doi: 10.1016/j.freeradbiomed.2014.11.013
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Petra Heffeter, Veronika F.S. Pape, Éva A. Enyedy, Bernhard K. Keppler, Gergely Szakacs, Christian R. Kowol. Anticancer Thiosemicarbazones: Chemical Properties, Interaction with Iron Metabolism, and Resistance DevelopmentAntioxidants & Redox Signaling 2019; 30(8): 1062 doi: 10.1089/ars.2017.7487
22
Colin G. Miller, Arne Holmgren, Elias S.J. Arnér, Edward E. Schmidt. NADPH-dependent and -independent disulfide reductase systemsFree Radical Biology and Medicine 2018; 127: 248 doi: 10.1016/j.freeradbiomed.2018.03.051
23
Illiyas Maqbool, Veeramani kandan Ponniresan, Kanimozhi Govindasamy, Nagarajan Rajendra Prasad. Understanding the survival mechanisms of Deinococcus radiodurans against oxidative stress by targeting thioredoxin reductase redox systemArchives of Microbiology 2020; 202(9): 2355 doi: 10.1007/s00203-019-01729-6
24
Ajanta Chatterji, Kumar Sachin, Rajib Sengupta. Glutathione-dependent thioredoxin reduction and lipoamide system support in-vitro mammalian ribonucleotide reductase catalysis: a possible antioxidant redundancyMolecular Biology Reports 2022; 49(8): 8179 doi: 10.1007/s11033-022-07480-4
25
Amin Sobh, Elena Encinas, Alisha Patel, Greeshma Surapaneni, Emilie Bonilla, Charlotte Kaestner, Janai Poullard, Monica Clerio, Karthik Vasan, Tzipporah Freeman, Dongwen Lv, Daphné Dupéré-Richer, Alberto Riva, Benjamin G. Barwick, Daohong Zhou, Lawrence H. Boise, Constantine S. Mitsiades, Baek Kim, Richard L. Bennett, Navdeep S. Chandel, Jonathan D. Licht. NSD2 drives t(4;14) myeloma cell dependence on adenylate kinase 2 by diverting one-carbon metabolism to the epigenomeBlood 2024; 144(3): 283 doi: 10.1182/blood.2023022859
26
María Esther Pérez-Pérez, Adeline Mauriès, Alexandre Maes, Nicolas J. Tourasse, Marion Hamon, Stéphane D. Lemaire, Christophe H. Marchand. The Deep Thioredoxome in Chlamydomonas reinhardtii: New Insights into Redox RegulationMolecular Plant 2017; 10(8): 1107 doi: 10.1016/j.molp.2017.07.009
27
Andrea Arsiccio, Clive Metcalfe, Roberto Pisano, Sanj Raut, Carmen Coxon, Luis E. S. Netto. A proximity-based in silico approach to identify redox-labile disulfide bonds: The example of FVIIIPLOS ONE 2022; 17(2): e0262409 doi: 10.1371/journal.pone.0262409
28
Simran S. Sabharwal, V. Joseph Dudley, Charlène Landwerlin, Paul T. Schumacker. H2O2 transit through the mitochondrial intermembrane space promotes tumor cell growth in vitro and in vivoJournal of Biological Chemistry 2023; 299(5): 104624 doi: 10.1016/j.jbc.2023.104624
29
Xiaomin Yu, Xiaoli Wu, Nagendra P. Shah, Feng Xu. Interaction between Bifidobacterium bifidum and Listeria monocytogenes enhances antioxidant activity through oxidoreductase systemLWT 2020; 127: 109209 doi: 10.1016/j.lwt.2020.109209
30
E. A. Stepovaya, E. V. Shakhristova, O. L. Nosareva, E. V. Rudikov, M. Yu. Egorova, D. Yu. Egorova, V. V. Novitsky. Redox-dependent mechanisms of regulation of breast epithelial cell proliferationBiochemistry (Moscow), Supplement Series B: Biomedical Chemistry 2017; 11(3): 296 doi: 10.1134/S199075081703009X
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Xiaoyuan Ren, Lili Zou, Arne Holmgren. Targeting Bacterial Antioxidant Systems for Antibiotics DevelopmentCurrent Medicinal Chemistry 2020; 27(12): 1922 doi: 10.2174/0929867326666191007163654
32
Pankaj Kumar Verma, Shikha Verma, Rudra Deo Tripathi, Nalini Pandey, Debasis Chakrabarty. CC-type glutaredoxin, OsGrx_C7 plays a crucial role in enhancing protection against salt stress in riceJournal of Biotechnology 2021; 329: 192 doi: 10.1016/j.jbiotec.2021.02.008
33
Dohyeong Jo, Hyeongsoon Kim, Yoona Lee, Jinshil Kim, Sangryeol Ryu. Characterization and genomic study of EJP2, a novel jumbo phage targeting antimicrobial resistant Escherichia coliFrontiers in Microbiology 2023; 14 doi: 10.3389/fmicb.2023.1194435
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35
Camille V. Goemans, François Beaufay, Khadija Wahni, Inge Van Molle, Joris Messens, Jean-François Collet. An essential thioredoxin is involved in the control of the cell cycle in the bacterium Caulobacter crescentusJournal of Biological Chemistry 2018; 293(10): 3839 doi: 10.1074/jbc.RA117.001042
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Guy Eelen, Pauline de Zeeuw, Lucas Treps, Ulrike Harjes, Brian W. Wong, Peter Carmeliet. Endothelial Cell MetabolismPhysiological Reviews 2018; 98(1): 3 doi: 10.1152/physrev.00001.2017
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Colin Buttimer, Hanne Hendrix, Hugo Oliveira, Aidan Casey, Horst Neve, Olivia McAuliffe, R. Paul Ross, Colin Hill, Jean-Paul Noben, Jim O'Mahony, Rob Lavigne, Aidan Coffey. Things Are Getting Hairy: Enterobacteria Bacteriophage vB_PcaM_CBBFrontiers in Microbiology 2017; 8 doi: 10.3389/fmicb.2017.00044
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Nikhilesh Joardar, Santi P. Sinha Babu. A review on the druggability of a thiol-based enzymatic antioxidant thioredoxin reductase for treating filariasis and other parasitic infectionsInternational Journal of Biological Macromolecules 2020; 142: 125 doi: 10.1016/j.ijbiomac.2019.09.083
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Thierry Léveillard, Najate Aït-Ali, Sergio Di Meo. Cell Signaling with Extracellular Thioredoxin and Thioredoxin‐Like Proteins: Insight into Their Mechanisms of ActionOxidative Medicine and Cellular Longevity 2017; 2017(1) doi: 10.1155/2017/8475125
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Silvia Napolitano, Robin J. Reber, Marina Rubini, Rudi Glockshuber. Functional analyses of ancestral thioredoxins provide insights into their evolutionary historyJournal of Biological Chemistry 2019; 294(38): 14105 doi: 10.1074/jbc.RA119.009718
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Inna Rozman Grinberg, Daniel Lundin, Margareta Sahlin, Mikael Crona, Gustav Berggren, Anders Hofer, Britt-Marie Sjöberg. A glutaredoxin domain fused to the radical-generating subunit of ribonucleotide reductase (RNR) functions as an efficient RNR reductantJournal of Biological Chemistry 2018; 293(41): 15889 doi: 10.1074/jbc.RA118.004991
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Meng Lou, Qian Liu, Guoping Ren, Jiling Zeng, Xueping Xiang, Yongfeng Ding, Qinghui Lin, Tingting Zhong, Xia Liu, Lijun Zhu, Hongyan Qi, Jing Shen, Haoran Li, Jimin Shao. Physical interaction between human ribonucleotide reductase large subunit and thioredoxin increases colorectal cancer malignancyJournal of Biological Chemistry 2017; 292(22): 9136 doi: 10.1074/jbc.M117.783365
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Thu-Thuy Nguyen, Trang Hoang, Kiet N. Tran, Hyeonji Kim, Sei-Heon Jang, ChangWoo Lee, Sabato D’Auria. Essential roles of buried phenylalanine in the structural stability of thioredoxin from a psychrophilic Arctic bacterium Sphingomonas sp.PLOS ONE 2021; 16(12): e0261123 doi: 10.1371/journal.pone.0261123
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Rajib Sengupta, Lucia Coppo, Pradeep Mishra, Arne Holmgren. Glutathione-glutaredoxin is an efficient electron donor system for mammalian p53R2–R1-dependent ribonucleotide reductaseJournal of Biological Chemistry 2019; 294(34): 12708 doi: 10.1074/jbc.RA119.008752
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Yichong Fan, Merna Makar, Michael X Wang, Hui-wang Ai. Monitoring thioredoxin redox with a genetically encoded red fluorescent biosensorNature Chemical Biology 2017; 13(9): 1045 doi: 10.1038/nchembio.2417
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JieDong Zhou, CuiXue Wang, JiaLin Wu, Atsushi Fukunaga, ZuSheng Cheng, JinQuan Wang, Akira Yamauchi, Junji Yodoi, Hai Tian. Anti-Allergic and Anti-Inflammatory Effects and Molecular Mechanisms of Thioredoxin on Respiratory System DiseasesAntioxidants & Redox Signaling 2020; 32(11): 785 doi: 10.1089/ars.2019.7807
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Joshua D. Chandler, Brian J. Day. Biochemical mechanisms and therapeutic potential of pseudohalide thiocyanate in human healthFree Radical Research 2015; 49(6): 695 doi: 10.3109/10715762.2014.1003372
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Joni Nikkanen, Saara Forsström, Liliya Euro, Ilse Paetau, Rebecca A. Kohnz, Liya Wang, Dmitri Chilov, Jenni Viinamäki, Anne Roivainen, Päivi Marjamäki, Heidi Liljenbäck, Sofia Ahola, Jana Buzkova, Mügen Terzioglu, Nahid A. Khan, Sini Pirnes-Karhu, Anders Paetau, Tuula Lönnqvist, Antti Sajantila, Pirjo Isohanni, Henna Tyynismaa, Daniel K. Nomura, Brendan J. Battersby, Vidya Velagapudi, Christopher J. Carroll, Anu Suomalainen. Mitochondrial DNA Replication Defects Disturb Cellular dNTP Pools and Remodel One-Carbon MetabolismCell Metabolism 2016; 23(4): 635 doi: 10.1016/j.cmet.2016.01.019
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John V. Schloss. Nutritional deficiencies that may predispose to long COVIDInflammopharmacology 2023; 31(2): 573 doi: 10.1007/s10787-023-01183-3
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Marcus J. C. Long, Phillippe Ly, Yimon Aye. Macromolecular Protein Complexes IVSubcellular Biochemistry 2022; 99: 155 doi: 10.1007/978-3-031-00793-4_5
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Zhuoran Zhen, Jiankun Ren, Jiajun Zhu. The redox requirement and regulation during cell proliferationTrends in Endocrinology & Metabolism 2024; 35(5): 385 doi: 10.1016/j.tem.2023.12.010
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Hedieh Attai, Maarten Boon, Kenya Phillips, Jean-Paul Noben, Rob Lavigne, Pamela J. B. Brown. Larger Than Life: Isolation and Genomic Characterization of a Jumbo Phage That Infects the Bacterial Plant Pathogen, Agrobacterium tumefaciensFrontiers in Microbiology 2018; 9 doi: 10.3389/fmicb.2018.01861
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Rajib Sengupta, Lucia Coppo, Esha Sircar, Pradeep Mishra, Arne Holmgren. S‐Denitrosylation by the C‐Terminal Swinging Arm of R1 Subunit: A Novel Mechanism to Restore Ribonucleotide Reductase ActivityChemistrySelect 2021; 6(8): 1845 doi: 10.1002/slct.202100153
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Raul Burgos, Marc Weber, Carolina Gallo, Maria Lluch-Senar, Luis Serrano. Widespread ribosome stalling in a genome-reduced bacterium and the need for translational quality controliScience 2021; 24(9): 102985 doi: 10.1016/j.isci.2021.102985
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M.A.H. Dilshan, W.K.M. Omeka, H.M.V. Udayantha, D.S. Liyanage, D.C.G. Rodrigo, W.A.D.L.R. Warnakula, H.A.C.R. Hanchapola, Y.K. Kodagoda, G.A.N.P. Ganepola, Jeongeun Kim, Gaeun Kim, Jihun Lee, Taehyug Jeong, Sukkyoung Lee, Qiang Wan, Jehee Lee. Insights into the functional properties of thioredoxin domain-containing protein 12 (TXNDC12): Antioxidant activity, immunological expression, and wound-healing effect in yellowtail clownfish (Amphiprion clarkii)Fish & Shellfish Immunology 2024; 154: 109939 doi: 10.1016/j.fsi.2024.109939
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Clive Metcalfe, Anjana Ramasubramoni, Giordano Pula, Matthew T. Harper, Stuart J. Mundell, Carmen H. Coxon, Marco Falasca. Thioredoxin Inhibitors Attenuate Platelet Function and Thrombus FormationPLOS ONE 2016; 11(10): e0163006 doi: 10.1371/journal.pone.0163006
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Daniel J. A. Roderer, Martin A. Schärer, Marina Rubini, Rudi Glockshuber. Acceleration of protein folding by four orders of magnitude through a single amino acid substitutionScientific Reports 2015; 5(1) doi: 10.1038/srep11840
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Christos Markatos, Georgia Biniari, Oleg G. Chepurny, Vlasios Karageorgos, Nikos Tsakalakis, Georgios Komontachakis, Zacharenia Vlata, Maria Venihaki, George G. Holz, Theodore Tselios, George Liapakis. Cytotoxic Activity of Novel GnRH Analogs Conjugated with Mitoxantrone in Ovarian Cancer CellsMolecules 2024; 29(17): 4127 doi: 10.3390/molecules29174127
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Beatriz Gómez-Gómez, Teresa Pérez-Corona, Fernanda Mozzi, Micaela Pescuma, Yolanda Madrid. Silac-based quantitative proteomic analysis of Lactobacillus reuteri CRL 1101 response to the presence of selenite and selenium nanoparticlesJournal of Proteomics 2019; 195: 53 doi: 10.1016/j.jprot.2018.12.025
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E.A. Stepovaya, E.V. Shakhristova, O.L. Nosareva, E.V. Rudikov, M.Y. Egorova, D.Y. Egorova, V.V. Novitsky. Redox-dependent mechanisms of regulation of breast epithelial cell proliferationBiomeditsinskaya Khimiya 2017; 63(2): 159 doi: 10.18097/PBMC20176302159
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Sae Bom Lee, Brianna N. Sellers, Gina M. DeNicola. The Regulation of NRF2 by Nutrient-Responsive Signaling and Its Role in Anabolic Cancer MetabolismAntioxidants & Redox Signaling 2018; 29(17): 1774 doi: 10.1089/ars.2017.7356
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Abdelmonim Ali Ahmad, Hardian Susilo Addy, Qi Huang. Biological and Molecular Characterization of a Jumbo Bacteriophage Infecting Plant Pathogenic Ralstonia solanacearum Species Complex StrainsFrontiers in Microbiology 2021; 12 doi: 10.3389/fmicb.2021.741600
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Francisca Sevilla, Maria Carmen Martí, Sabrina De Brasi-Velasco, Ana Jiménez, Angeles Aroca. Redox regulation, thioredoxins, and glutaredoxins in retrograde signalling and gene transcriptionJournal of Experimental Botany 2023; 74(19): 5955 doi: 10.1093/jxb/erad270
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Desirée Hao, Arjun Sengupta, Keyue Ding, ER Ubeydullah, Saikumari Krishnaiah, Natasha B. Leighl, Frances A. Shepherd, Lesley Seymour, Aalim Weljie. Metabolites as Prognostic Markers for Metastatic Non-Small Cell Lung Cancer (NSCLC) Patients Treated with First-Line Platinum-Doublet ChemotherapyCancers 2020; 12(7): 1926 doi: 10.3390/cancers12071926
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Carsten Berndt, Christopher H. Lillig, Leopold Flohé. Redox regulation by glutathione needs enzymesFrontiers in Pharmacology 2014; 5 doi: 10.3389/fphar.2014.00168
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Suo-fu Ye, Jian Li, Shuang-min Ji, Hui-hui Zeng, Wei Lu. Dose-biomarker-response modeling of the anticancer effect of ethaselen in a human non-small cell lung cancer xenograft mouse modelActa Pharmacologica Sinica 2017; 38(2): 223 doi: 10.1038/aps.2016.114
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N. T. Moldogazieva, I. M. Mokhosoev, N. B. Feldman, S. V. Lutsenko. ROS and RNS signalling: adaptive redox switches through oxidative/nitrosative protein modificationsFree Radical Research 2018; 52(5): 507 doi: 10.1080/10715762.2018.1457217
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Pei Zhang, Jilian Wu, Fengmei Xiao, Dujuan Zhao, Yuxia Luan. Disulfide bond based polymeric drug carriers for cancer chemotherapy and relevant redox environments in mammalsMedicinal Research Reviews 2018; 38(5): 1485 doi: 10.1002/med.21485
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José Antonio Mora-Lorca, Beatriz Sáenz-Narciso, Christopher J. Gaffney, Francisco José Naranjo-Galindo, José Rafael Pedrajas, David Guerrero-Gómez, Agnieszka Dobrzynska, Peter Askjaer, Nathaniel J. Szewczyk, Juan Cabello, Antonio Miranda-Vizuete. Glutathione reductase gsr-1 is an essential gene required for Caenorhabditis elegans early embryonic developmentFree Radical Biology and Medicine 2016; 96: 446 doi: 10.1016/j.freeradbiomed.2016.04.017
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Vladimir A. Makarov, Natalia K. Tikhomirova, Lyudmila V. Savvateeva, Anastasiia I. Petushkova, Marina V. Serebryakova, Viktoriia E. Baksheeva, Neonila V. Gorokhovets, Evgeni Yu. Zernii, Andrey A. Zamyatnin. Novel applications of modification of thiol enzymes and redox-regulated proteins using S-methyl methanethiosulfonate (MMTS)Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics 2019; 1867(11): 140259 doi: 10.1016/j.bbapap.2019.07.012
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Xingyu Huang, Nianzhi Jiao, Rui Zhang. The genomic content and context of auxiliary metabolic genes in roseophagesEnvironmental Microbiology 2021; 23(7): 3743 doi: 10.1111/1462-2920.15412
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Aingeru Calderón, Ana Ortiz-Espín, Raquel Iglesias-Fernández, Pilar Carbonero, Federico Vicente Pallardó, Francisca Sevilla, Ana Jiménez. Thioredoxin (Trxo1) interacts with proliferating cell nuclear antigen (PCNA) and its overexpression affects the growth of tobacco cell cultureRedox Biology 2017; 11: 688 doi: 10.1016/j.redox.2017.01.018
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Marcelo A. Comini. Measurement and meaning of cellular thiol:disufhide redox statusFree Radical Research 2016; 50(2): 246 doi: 10.3109/10715762.2015.1110241
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R. S. Patwardhan, D. Sharma, R. Checker, M. Thoh, S. K. Sandur. Spatio-temporal changes in glutathione and thioredoxin redox couples during ionizing radiation-induced oxidative stress regulate tumor radio-resistanceFree Radical Research 2015; 49(10): 1218 doi: 10.3109/10715762.2015.1056180
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Xuejing Li, Ruizhe Guo, Xiao Zou, Yanyan Yao, Longfei Lu. The First Cbk-Like Phage Infecting Erythrobacter, Representing a Novel Siphoviral GenusFrontiers in Microbiology 2022; 13 doi: 10.3389/fmicb.2022.861793