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cerebellar < cerevisiae < cervical  Facettes :

List of bibliographic references indexed by cerevisiae

Number of relevant bibliographic references: 59.
[0-20] [0 - 20][0 - 50][20-40]
Ident.Authors (with country if any)Title
000057 (2020) M Nica A. Mechoud [Espagne] ; Nuria Pujol-Carrion [Espagne] ; Sandra Montella-Manuel [Espagne] ; Maria Angeles De La Torre-Ruiz [Autriche]Interactions of GMP with Human Glrx3 and with Saccharomyces cerevisiae Grx3 and Grx4 Converge in the Regulation of the Gcn2 Pathway.
000123 (2019) Ying Li [République populaire de Chine] ; Yujie Zhang [République populaire de Chine] ; Meiling Liu [République populaire de Chine] ; Yi Qin [République populaire de Chine] ; Yanlin Liu [République populaire de Chine]Saccharomyces cerevisiae isolates with extreme hydrogen sulfide production showed different oxidative stress resistances responses during wine fermentation by RNA sequencing analysis.
000157 (2019) Shadi Maghool [Australie] ; Sharon La Fontaine [Australie] ; Megan J. Maher [Australie]High-resolution crystal structure of the reduced Grx1 from Saccharomyces cerevisiae.
000261 (2018) Yan Liu [République populaire de Chine] ; Fan Yang [République populaire de Chine] ; Siying Li [États-Unis] ; Junbiao Dai [République populaire de Chine] ; Haiteng Deng [République populaire de Chine]Glutaredoxin Deletion Shortens Chronological Life Span in Saccharomyces cerevisiae via ROS-Mediated Ras/PKA Activation.
000343 (2017) María Teresa Martínez-Pastor [Espagne] ; Ana Perea-García [Espagne] ; Sergi Puig [Espagne]Mechanisms of iron sensing and regulation in the yeast Saccharomyces cerevisiae.
000471 (2016) Estéfani García-Ríos [Espagne] ; Lucía Ramos-Alonso [Espagne] ; José M. Guillam N [Espagne]Correlation between Low Temperature Adaptation and Oxidative Stress in Saccharomyces cerevisiae.
000574 (2015) Judit Puigpin S [Espagne] ; Celia Casas [Espagne] ; Enrique Herrero [Autriche]Altered intracellular calcium homeostasis and endoplasmic reticulum redox state in Saccharomyces cerevisiae cells lacking Grx6 glutaredoxin.
000637 (2014) Catherine B. Poor [États-Unis] ; Seraphine V. Wegner ; Haoran Li ; Adrienne C. Dlouhy ; Jonathan P. Schuermann ; Ruslan Sanishvili ; James R. Hinshaw ; Pamela J. Riggs-Gelasco ; Caryn E. Outten ; Chuan HeMolecular mechanism and structure of the Saccharomyces cerevisiae iron regulator Aft2.
000743 (2013) Ceren Alkim [France] ; Laurent Benbadis ; Ulku Yilmaz ; Z Petek Cakar ; Jean Marie FrançoisMechanisms other than activation of the iron regulon account for the hyper-resistance to cobalt of a Saccharomyces cerevisiae strain obtained by evolutionary engineering.
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.
000903 (2011) B. Mcdonagh [Espagne] ; R. Requejo ; C A Fuentes-Almagro ; S. Ogueta ; J A Bárcena ; C A PadillaThiol redox proteomics identifies differential targets of cytosolic and mitochondrial glutaredoxin-2 isoforms in Saccharomyces cerevisiae. Reversible S-glutathionylation of DHBP synthase (RIB3).
000940 (2011) Yan Zhang [États-Unis] ; Lili Liu ; Xiaorong Wu ; Xiuxiang An ; Joanne Stubbe ; Mingxia HuangInvestigation of in vivo diferric tyrosyl radical formation in Saccharomyces cerevisiae Rnr2 protein: requirement of Rnr4 and contribution of Grx3/4 AND Dre2 proteins.
000955 (2011) Brian Mcdonagh [Espagne] ; C Alicia Padilla ; José Rafael Pedrajas ; José Antonio BárcenaBiosynthetic and iron metabolism is regulated by thiol proteome changes dependent on glutaredoxin-2 and mitochondrial peroxiredoxin-1 in Saccharomyces cerevisiae.
000976 (2010) Darren Greetham [Royaume-Uni] ; Jill Vickerstaff ; Daniel Shenton ; Gabriel G. Perrone ; Ian W. Dawes ; Chris M. GrantThioredoxins function as deglutathionylase enzymes in the yeast Saccharomyces cerevisiae.
000980 (2010) Shi-Xiong Tan [Australie] ; Darren Greetham ; Sebastian Raeth ; Chris M. Grant ; Ian W. Dawes ; Gabriel G. PerroneThe thioredoxin-thioredoxin reductase system can function in vivo as an alternative system to reduce oxidized glutathione in Saccharomyces cerevisiae.
000996 (2010) Alicia Izquierdo [Espagne] ; Celia Casas [Espagne] ; Enrique Herrero [Espagne]Selenite-induced cell death in Saccharomyces cerevisiae: protective role of glutaredoxins.
000A24 (2010) Nuria Pujol-Carrion [Espagne] ; Maria Angeles De La Torre-RuizGlutaredoxins Grx4 and Grx3 of Saccharomyces cerevisiae play a role in actin dynamics through their Trx domains, which contributes to oxidative stress resistance.
000A27 (2010) José Rafael Pedrajas [Espagne] ; C Alicia Padilla ; Brian Mcdonagh ; José Antonio BárcenaGlutaredoxin participates in the reduction of peroxides by the mitochondrial 1-CYS peroxiredoxin in Saccharomyces cerevisiae.
000A45 (2010) Geun-Hee Kwak [Corée du Sud] ; Moon-Jung Kim ; Hwa-Young KimCysteine-125 is the catalytic residue of Saccharomyces cerevisiae free methionine-R-sulfoxide reductase.
000A50 (2010) Stefano M. Marino [États-Unis] ; Yehua Li ; Dmitri E. Fomenko ; Natalia Agisheva ; Ronald L. Cerny ; Vadim N. GladyshevCharacterization of surface-exposed reactive cysteine residues in Saccharomyces cerevisiae.
000A80 (2009) Karen Fulan Discola [Brésil] ; Marcos Antonio De Oliveira ; José Renato Rosa Cussiol ; Gisele Monteiro ; José Antonio Bárcena ; Pablo Porras ; C Alicia Padilla ; Beatriz Gomes Guimarães ; Luis Eduardo Soares NettoStructural aspects of the distinct biochemical properties of glutaredoxin 1 and glutaredoxin 2 from Saccharomyces cerevisiae.

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