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

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List of bibliographic references indexed by act

Number of relevant bibliographic references: 68.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000044 (2020) Daniel Trnka [Allemagne] ; Anna D. Engelke [Allemagne] ; Manuela Gellert [Allemagne] ; Anna Moseler [Allemagne, France] ; Md Faruq Hossain [Allemagne] ; Tobias T. Lindenberg [Allemagne] ; Luca Pedroletti [Allemagne] ; Benjamin Odermatt [Allemagne] ; João V. De Souza [Royaume-Uni] ; Agnieszka K. Bronowska [Royaume-Uni] ; Tobias P. Dick [Allemagne] ; Uli Mühlenhoff [Allemagne] ; Andreas J. Meyer [Allemagne] ; Carsten Berndt [Allemagne] ; Christopher Horst Lillig [Allemagne]Molecular basis for the distinct functions of redox-active and FeS-transfering glutaredoxins.
000060 (2020) Shadi Maghool [Australie] ; Sharon La Fontaine [Australie] ; Blaine R. Roberts [Australie, États-Unis] ; Ann H. Kwan [Australie] ; Megan J. Maher [Australie]Human glutaredoxin-1 can transfer copper to isolated metal binding domains of the P1B-type ATPase, ATP7B.
000099 (2019) N Y Rusetskaya [Russie] ; I V Fedotov [Russie] ; V A Koftina [Russie] ; V B Borodulin [Russie][Selenium compounds in redox regulation of inflammation and apoptosis].
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.
000146 (2019) Zhiguang Xiao [Australie] ; Sharon La Fontaine [Australie] ; Ashley I. Bush [Australie] ; Anthony G. Wedd [Australie]Molecular Mechanisms of Glutaredoxin Enzymes: Versatile Hubs for Thiol-Disulfide Exchange between Protein Thiols and Glutathione.
000153 (2019) Pascal Rey [France] ; Maël Taupin-Broggini [France] ; Jérémy Couturier [France] ; Florence Vignols [France] ; Nicolas Rouhier [France]Is There a Role for Glutaredoxins and BOLAs in the Perception of the Cellular Iron Status in Plants?
000188 (2019) Xiaoyuan Ren [Suède] ; Rajib Sengupta [Suède, Inde] ; Jun Lu [Suède, République populaire de Chine] ; Jon O. Lundberg [Suède] ; Arne Holmgren [Suède]Characterization of mammalian glutaredoxin isoforms as S-denitrosylases.
000292 (2018) Long-Bin Zhang [République populaire de Chine] ; Ming-Guang Feng [République populaire de Chine]Antioxidant enzymes and their contributions to biological control potential of fungal insect pathogens.
000357 (2017) Karolina G Rna [Pologne] ; Dawid Perlikowski [Pologne] ; Arkadiusz Kosmala [Pologne] ; Łukasz St Pie [Pologne]Host extracts induce changes in the proteome of plant pathogen Fusarium proliferatum.
000367 (2017) Tyler J. Bechtel [États-Unis] ; Eranthie Weerapana [États-Unis]From structure to redox: The diverse functional roles of disulfides and implications in disease.
000380 (2017) Vladimir Domkin ; Andrei ChabesCorrigendum: Phosphines are ribonucleotide reductase reductants that act via C-terminal cysteines similar to thioredoxins and glutaredoxins.
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.
000492 (2015) Jun Yoshioka [États-Unis]Thioredoxin superfamily and its effects on cardiac physiology and pathology.
000531 (2015) Olof Allnér [Suède] ; Nicolas Foloppe ; Lennart NilssonMotions and entropies in proteins as seen in NMR relaxation experiments and molecular dynamics simulations.
000536 (2015) Moon-Jung Kim [Corée du Sud] ; Jaeho Jeong [Corée du Sud] ; Jihye Jeong [Corée du Sud] ; Kwang Yeon Hwang [Corée du Sud] ; Kong-Joo Lee [Corée du Sud] ; Hwa-Young Kim [Corée du Sud]Mechanism of 1-Cys type methionine sulfoxide reductase A regeneration by glutaredoxin.
000612 (2014) Jens Brose [Australie] ; Sharon La Fontaine ; Anthony G. Wedd ; Zhiguang XiaoRedox sulfur chemistry of the copper chaperone Atox1 is regulated by the enzyme glutaredoxin 1, the reduction potential of the glutathione couple GSSG/2GSH and the availability of Cu(I).
000626 (2014) Shuyan Li [République populaire de Chine] ; Yan Sun [République populaire de Chine] ; Xiaodan Qi [République populaire de Chine] ; Yan Shi [République populaire de Chine] ; Han Gao [République populaire de Chine] ; Qi Wu [République populaire de Chine] ; Xiucai Liu [République populaire de Chine] ; Haitao Yu [République populaire de Chine] ; Chunjing Zhang [République populaire de Chine]Protective effect and mechanism of glutaredoxin 1 on coronary arteries endothelial cells damage induced by high glucose.
000629 (2014) Vladimir Domkin [Suède] ; Andrei Chabes [Suède]Phosphines are ribonucleotide reductase reductants that act via C-terminal cysteines similar to thioredoxins and glutaredoxins.
000635 (2014) Prithwiraj Kirtania [Inde] ; Bidisha Bhattacharya ; Sujoy K. Das GuptaMycobacteriophage L5Gp56, a novel member of the NrdH family of redoxins.
000669 (2014) Prahlad V. Raninga [Australie] ; Giovanna Di Trapani [Australie] ; Kathryn F. Tonissen [Australie]Cross Talk between Two Antioxidant Systems, Thioredoxin and DJ-1: Consequences for Cancer.
000686 (2014) Danyelle M. Townsend [États-Unis] ; Volodymyr I. Lushchak [Ukraine] ; Arthur J L. Cooper [États-Unis]A comparison of reversible versus irreversible protein glutathionylation.

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