Serveur d'exploration sur le phanerochaete - Curation (Accueil)

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List of bibliographic references

Number of relevant bibliographic references: 17.
Ident.Authors (with country if any)Title
000265 (2015) Kouta Takeda [Japon] ; Hirotoshi Matsumura [Japon] ; Takuya Ishida [Japon] ; Masahiro Samejima [Japon] ; Hiroyuki Ohno [Japon] ; Makoto Yoshida [Japon] ; Kiyohiko Igarashi [Japon] ; Nobuhumi Nakamura [Japon]Characterization of a novel PQQ-dependent quinohemoprotein pyranose dehydrogenase from Coprinopsis cinerea classified into auxiliary activities family 12 in carbohydrate-active enzymes.
000394 (2012) Roberto Ortiz [Suède] ; Hirotoshi Matsumura ; Federico Tasca ; Kawah Zahma ; Masahiro Samejima ; Kiyohiko Igarashi ; Roland Ludwig ; Lo GortonEffect of deglycosylation of cellobiose dehydrogenases on the enhancement of direct electron transfer with electrodes.
000416 (2012) Hirotoshi Matsumura [Suède] ; Roberto Ortiz ; Roland Ludwig ; Kiyohiko Igarashi ; Masahiro Samejima ; Lo GortonDirect electrochemistry of Phanerochaete chrysosporium cellobiose dehydrogenase covalently attached onto gold nanoparticle modified solid gold electrodes.
000448 (2012) Daniel Robles-Vargas [Mexique] ; Sandra Margarita Montoya-Castillo ; Francisco Javier Avelar-González ; Juan Jauregui-Rinc N ; Francisco Javier Rodríguez-Valadez ; Roberto Rico-MartínezAssessment of the quality and toxicity of the discharges of a wastewater treatment plant and alternatives to improve its operation.
000514 (2011) Gui-Qiu Chen [République populaire de Chine] ; Wen-Juan Zhang ; Guang-Ming Zeng ; Jin-Hui Huang ; Liang Wang ; Guo-Li ShenSurface-modified Phanerochaete chrysosporium as a biosorbent for Cr(VI)-contaminated wastewater.
000608 (2009) Leonard Stoica [Suède] ; Tautgirdas Ruzgas ; Lo GortonElectrochemical evidence of self-substrate inhibition as functions regulation for cellobiose dehydrogenase from Phanerochaete chrysosporium.
000638 (2009) Federico Tasca [Suède] ; Lo Gorton ; Wolfgang Harreither ; Dietmar Haltrich ; Roland Ludwig ; Gilbert NöllComparison of direct and mediated electron transfer for cellobiose dehydrogenase from Phanerochaete sordida.
000660 (2009) Lin Tang [République populaire de Chine] ; Guangming Zeng ; Guoli Shen ; Yuanping Li ; Can Liu ; Zhen Li ; Jie Luo ; Changzheng Fan ; Chunping YangSensitive detection of lip genes by electrochemical DNA sensor and its application in polymerase chain reaction amplicons from Phanerochaete chrysosporium.
000800 (2006) Leonard Stoica [Suède] ; Roland Ludwig ; Dietmar Haltrich ; Lo GortonThird-generation biosensor for lactose based on newly discovered cellobiose dehydrogenase.
000835 (2005) Jun Feng [États-Unis] ; Michael E. Himmel ; Stephen R. DeckerElectrochemical oxidation of water by a cellobiose dehydrogenase from Phanerochaete chrysosporium.
000855 (2005) Leonard Stoica [Suède] ; Nina Dimcheva ; Dietmar Haltrich ; Tautgirdas Ruzgas ; Lo GortonElectrochemical investigation of cellobiose dehydrogenase from new fungal sources on Au electrodes.
000950 (2003) Frederik A J. Rotsaert [États-Unis] ; B Martin Hallberg ; Simon De Vries ; Pierre Moenne-Loccoz ; Christina Divne ; V. Renganathan ; Michael H. GoldBiophysical and structural analysis of a novel heme B iron ligation in the flavocytochrome cellobiose dehydrogenase.
000954 (2003) Kibeom Lee [Corée du Sud] ; Seung-Hyeon MoonElectroenzymatic oxidation of veratryl alcohol by lignin peroxidase.
000A55 (2001) T. Larsson [Suède] ; A. Lindgren ; T. RuzgasSpectroelectrochemical study of cellobiose dehydrogenase and diaphorase in a thiol-modified gold capillary in the absence of mediators.
000A97 (2000) V. Fridman [Allemagne] ; U. Wollenberger ; V. Bogdanovskaya ; F. Lisdat ; T. Ruzgas ; A. Lindgren ; L. Gorton ; F W SchellerElectrochemical investigation of cellobiose oxidation by cellobiose dehydrogenase in the presence of cytochrome c as mediator.
000B35 (1999) R E Whitwam [États-Unis] ; R S Koduri ; M. Natan ; M. TienRole of axial ligands in the reactivity of Mn peroxidase from Phanerochaete chrysosporium.
000C00 (1997) R E Whitwam [États-Unis] ; K R Brown ; M. Musick ; M J Natan ; M. TienMutagenesis of the Mn2+-binding site of manganese peroxidase affects oxidation of Mn2+ by both compound I and compound II.

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