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

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catalysts < catalytic < catalyze  Facettes :

List of bibliographic references indexed by catalytic

Number of relevant bibliographic references: 35.
[0-20] [0 - 20][0 - 35][20-34][20-40]
Ident.Authors (with country if any)Title
000189 (2019) Donglu Zhang [Oman] ; Aimee Fourie-O'Donohue [États-Unis] ; Peter S. Dragovich [États-Unis] ; Thomas H. Pillow [États-Unis] ; Jack D. Sadowsky [États-Unis] ; Katherine R. Kozak [États-Unis] ; Robert T. Cass [États-Unis] ; Liling Liu [États-Unis] ; Yuzhong Deng [États-Unis] ; Yichin Liu [États-Unis] ; Cornelis E C A. Hop [États-Unis] ; S Cyrus Khojasteh [Oman]Catalytic Cleavage of Disulfide Bonds in Small Molecules and Linkers of Antibody-Drug Conjugates.
000309 (2017) Xinyu Zhang [République populaire de Chine] ; Wenming Wang [République populaire de Chine] ; Chen Li [République populaire de Chine] ; Yi Zhao [République populaire de Chine] ; Hong Yuan [République populaire de Chine] ; Xianshi Tan [République populaire de Chine] ; Lijie Wu [République populaire de Chine] ; Zhuanhua Wang [République populaire de Chine] ; Hongfei Wang [République populaire de Chine]Structural insights into the binding of buckwheat glutaredoxin with GSH and regulation of its catalytic activity.
000394 (2017) Christoph Loderer [Suède] ; Venkateswara Rao Jonna [Suède] ; Mikael Crona [Suède] ; Inna Rozman Grinberg [Suède] ; Margareta Sahlin [Suède] ; Anders Hofer [Suède] ; Daniel Lundin [Suède] ; Britt-Marie Sjöberg [Suède]A unique cysteine-rich zinc finger domain present in a majority of class II ribonucleotide reductases mediates catalytic turnover.
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.
000668 (2014) Ulrich Schweizer [Allemagne] ; Christine Schlicker [Allemagne] ; Doreen Braun [Allemagne] ; Josef Köhrle ; Clemens Steegborn [Allemagne]Crystal structure of mammalian selenocysteine-dependent iodothyronine deiodinase suggests a peroxiredoxin-like catalytic mechanism.
000699 (2013) Zachary D. Parsons [États-Unis] ; Kent S. GatesThiol-dependent recovery of catalytic activity from oxidized protein tyrosine phosphatases.
000807 (2012) Nicolas Foloppe [Royaume-Uni] ; Alexios Vlamis-Gardikas ; Lennart NilssonThe -Cys-X1-X2-Cys- motif of reduced glutaredoxins adopts a consensus structure that explains the low pK(a) of its catalytic cysteine.
000814 (2012) Irina Yu Petrushanko [Russie] ; Sergej Yakushev ; Vladimir A. Mitkevich ; Yuliya V. Kamanina ; Rustam H. Ziganshin ; Xianyu Meng ; Anastasiya A. Anashkina ; Asya Makhro ; Olga D. Lopina ; Max Gassmann ; Alexander A. Makarov ; Anna BogdanovaS-glutathionylation of the Na,K-ATPase catalytic α subunit is a determinant of the enzyme redox sensitivity.
000895 (2011) Indu Bhatt [Inde] ; B N TripathiPlant peroxiredoxins: catalytic mechanisms, functional significance and future perspectives.
000935 (2011) Kristine Steen Jensen [Danemark] ; Jakob R. Winther ; Kaare TeilumMillisecond dynamics in glutaredoxin during catalytic turnover is dependent on substrate binding and absent in the resting states.
000939 (2011) Hsin-Hung Huang [États-Unis] ; Latasha Day ; Cynthia L. Cass ; David P. Ballou ; Charles H. Williams ; David L. WilliamsInvestigations of the catalytic mechanism of thioredoxin glutathione reductase from Schistosoma mansoni.
000989 (2010) David J. Clarke [Royaume-Uni] ; Ximena P. Ortega ; C Logan Mackay ; Miguel A. Valvano ; John R W. Govan ; Dominic J. Campopiano ; Pat Langridge-Smith ; Alan R. BrownSubdivision of the bacterioferritin comigratory protein family of bacterial peroxiredoxins based on catalytic activity.
000A16 (2010) Francesco Angelucci [Italie] ; Daniela Dimastrogiovanni ; Giovanna Boumis ; Maurizio Brunori ; Adriana E. Miele ; Fulvio Saccoccia ; Andrea BellelliMapping the catalytic cycle of Schistosoma mansoni thioredoxin glutathione reductase by X-ray crystallography.
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.
000A62 (2010) Talia Shekhter [Israël] ; Norman Metanis ; Philip E. Dawson ; Ehud KeinanA residue outside the active site CXXC motif regulates the catalytic efficiency of Glutaredoxin 3.
000A81 (2009) Rui Bao [République populaire de Chine] ; Yaru Zhang ; Xiaochu Lou ; Cong-Zhao Zhou ; Yuxing ChenStructural and kinetic analysis of Saccharomyces cerevisiae thioredoxin Trx1: implications for the catalytic mechanism of GSSG reduced by the thioredoxin system.
000B48 (2009) Elisabeth Eckers [Allemagne] ; Melanie Bien ; Vincent Stroobant ; Johannes M. Herrmann ; Marcel DeponteBiochemical characterization of dithiol glutaredoxin 8 from Saccharomyces cerevisiae: the catalytic redox mechanism redux.
000B94 (2008) Molly M. Gallogly [États-Unis] ; David W. Starke ; Amanda K. Leonberg ; Susan M English Ospina ; John J. MieyalKinetic and mechanistic characterization and versatile catalytic properties of mammalian glutaredoxin 2: implications for intracellular roles.
000C27 (2008) Cha San Koh [France] ; Nicolas Navrot ; Claude Didierjean ; Nicolas Rouhier ; Masakazu Hirasawa ; David B. Knaff ; Gunnar Wingsle ; Razip Samian ; Jean-Pierre Jacquot ; Catherine Corbier ; Eric GelhayeAn atypical catalytic mechanism involving three cysteines of thioredoxin.
000C38 (2007) Sylvie Camier [France] ; Emilie Ma ; Christophe Leroy ; Alain Pruvost ; Michel Toledano ; Marie-Claude Marsolier-KergoatVisualization of ribonucleotide reductase catalytic oxidation establishes thioredoxins as its major reductants in yeast.
000C55 (2007) Nicolas Foloppe [Suède] ; Lennart NilssonStabilization of the catalytic thiolate in a mammalian glutaredoxin: structure, dynamics and electrostatics of reduced pig glutaredoxin and its mutants.

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