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«by CHIEH-TING WANG (Under the Direction of Jeffrey F. D. Dean) ABSTRACT Laccase and related laccase-like multicopper oxidases (LMCOs) have been ...»

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Hakulinen N, Kiiskinen L, Kruus K, Saloheimo M, Paananen A, Koivula A, Rouvinen J (2002) Crystal structure of a laccase from Melanocarpus albomyces with an intact trinuclear site.

Nat Struct Biol 9:601–605 Halpin C, Barakate A, Abbott J, El Amrani A (1999) Arabidopsis laccases. Proceedings of the Biennial IUFRO Conference on Tree Biotechnology, July 11-16, Oxford, England Harkin JM, Obst JR (1973) Lignification in trees: indication of exclusive peroxidase participation. Science 180:296-298 Harris ZL, Davis-Kaplan SR, Gitlin JD, Kaplan J (2004) A fungal multicopper oxidase restores iron homeostasis in aceruloplasminemia. Blood 103:4672-4673 Harris ZL, Durley AP, Man TK, Gitlin JD (1999) Targeted gene disruption reveals an essential role for ceruloplasmin in cellular iron efflux. Proc Natl Acad Sci USA 96:10812-10817 Harris ZL, Takahashi Y, Miyajima H, Serizawa M, MacGillivray RT, Gitlin JD (1995) Aceruloplasminemia: molecular characterization of this disorder of iron metabolism. Proc Natl Acad Sci USA 92:2539-2543 Harris ZL, Davis-Kaplan SR, Gitlin JD, Kaplan J (2004) A fungal multicopper oxidase restores iron homeostasis in aceruloplasminemia. Blood 103:4672–4673 Henriques R, Jasik J, Klein M, Martinoia E, Feller U (2002) Knock out of Arabidopsis metal transporter gene IRT1 results in iron deficiency accompanied by cell differentiation defects. Plant Mol Biol 50:587–97 Herbik A, Haebel S, Buckhout TJ (2002) Is a ferroxidase involved in the high-affinity iron uptake in Chlamydomonas reinhardtii? Plant and Soil 241: 1-9 Hoopes JT, Dean JFD (2004) Ferroxidase activity in a laccaselike multicopper oxidase from Liriodendron tulipifera. Plant Physiol Biochem 42:27-33

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Kiefer-Meyer M, Gomord V, OqConnell A, Halpin C, Faye L (1996) Cloning and sequence analysis of laccase-encoding cDNA clones from tobacco. Gene 178:205-207 Kim C, Lorenz WW, Hoopes T, Dean JFD (2001) Oxidation of siderophores by the multicopper oxidase encoded by the Escherichia coli yacK gene. J Bacteriol 183:4866-4875 Korshunova YO, Eide DJ, Clark WG, Guerinot ML, Pakrasi HB (1999) The IRT1 protein from Arabidopsis thaliana is a metal transporter with a broad substrate range. Plant Mol Biol 40:37–44 Kumar SV, Phale PS, Durani S, Wangikar PP (2003) Combined sequence and structure analysis of the fungal laccase family.

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Li K, Xu F, Eriksson KEL (1999) Comparison of fungal laccases and redox mediators in oxidation of a nonphenolic lignin model compound. Appl Environ Microbiol 65:2654-2660 Lin LS, Varner JD (1991) Expression of ascorbic acid oxidase in zucchini squash (Cucurbita pepo L.). Plant Physiol 96:159-154 Liu L, Tewari RP, and Williamson PR (1999) Laccase protects Cryptococcus neoformans from antifungal activity of alveolar macrophages. Infect Immun 67:6034-6039 Marentes E, Grusak MA. (1998) Iron transport and storage within the seed coat and embryo of developing seeds of pea (Pisum sativum L.). Seed Sci Res 8:367–75 Mayer AM, Harel E (1979) Polyphenol oxidases in plants.

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Disproof against the catalytic activity of laccase in the oxidation of coniferyl alcohol. J Biochem (Tokyo) 62:54-61 Negishi T, Nakanishi H, Yazaki J, Kishimoto N, Fujii F (2002) cDNA microarray analysis of gene expression during Fedeficiency stress in barley suggests that polar transport of vesicles is implicated in phytosiderophore secretion in Fedeficient barley roots. Plant J 30:83–94 O’Malley DM, Whetten R, Bao W, Chen CL, Sederoff RR (1993) The role of laccase in lignification. Plant J 4: 751-757 Ohkawa J, Okada N, Shinmyo A, Takano M (1989) Primary structure of cucumber (Cucumis sativus) ascorbate oxidase deduced from cDNA sequence; homology with blue copper proteins and tissuespecific expression. Proc Natl Sci USA 86:1239-1243 Olson PD, Varner JE (1993) Hydrogen peroxide and lignification.

Plant J 5:887-892 Piontek K, Antorini M, Choinowski T (2002) Crystal structure of a laccase from the fungus Trametes versicolor at 1.90-Å resolution containing a full complement of coppers. J Biol Chem 277:37663–37669 Pourcel L, Routaboul JM, Caboche M, Lepiniec L, Debeaujon I (2005) The transparent testa 10 gene ecodes a laccase like protein involved in oxidative browning of the Arabidopsis testa. The 16th International Conference on Arabidopsis Research. June 15-19, Madison, Wisconsin, USA. #607 Ranocha P, Chabannes M, Chamayou S, Danoun S, Jauneau A, Boudet AM, Goffner D (2002) Laccase down-regulation causes alterations in phenolic metabolism and cell wall structure in poplar. Plant Physiol 129:145-155 34 Ranocha P, Goffner D, Boudet AM (2000) Plant laccases: are they involved in lignification? In: Cell and Molecular Biology of Wood Formation. Davidge, Barnett JR, Napier R, eds., BIOS Scientific Publishers Limited, pp 397-410.

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