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HORT640 - Metabolic Plant Physiology
References, glycolate oxidase
Bagard M, Le Thiec D, Delacote E, Hasenfratz-Sauder MP, Banvoy J, Gerard J, Dizengremel P, Jolivet Y. Ozone-induced changes in photosynthesis and photorespiration of hybrid poplar in relation to the developmental stage of the leaves. Physiol. Plant. 134: 559-574 (2008).
Barak S, Nejidat A, Heimer Y, Volokita M. Transcriptional and posttranscriptional regulation of the glycolate oxidase gene in tobacco seedlings. Plant Mol. Biol. 45: 399-407 (2001).
Branden CI, Schneider G, Lindqvist Y, Andersson I, Knight S, Lorimer G. Structural and evolutionary aspects of the key enzymes in photorespiration RuBisCO and glycolate oxidase. Cold Spring Harb. Symp. Quant. Biol. 52: 491-498 (1987).
Brickner DG, Harada JJ, Olsen LJ. Protein transport into higher plant peroxisomes. In vitro import assay provides evidence for receptor involvement. Plant Physiol. 113: 1213-1221 (1997).
Cederlund E, Lindqvist Y, Soderlund G, Branden CI, Jornvall H. Primary structure of glycolate oxidase from spinach. Eur. J. Biochem. 173: 523-530 (1988).
Devi MT, Raghavendra AS. Partial reduction in activities of photorespiratory enzymes in C3-C4 intermediates of Alternanthera and Parthenium. J. Exp. Bot. 44: 779-784 (1993).
Devi MT, Rajagopalan AV, Raghavendra AS. Predominant localization of mitochondria enriched with glycine decarboxylating enzymes in bundle-sheath cells of Alternanthera tenella, a C3-C4 intermediate species. Plant Cell Environ. 18: 589-594 (1995).
Devi MT, Rajagopalan AV, Raghavendra AS. Purification and properties of glycolate oxidase from plants with different photosynthetic pathways: Distinctness of C-4 enzyme from that of a C-3 species and a C-3-C-4 intermediate. Photosynth. Res. 47: 231-238 (1996).
Diep Le KH, Lederer F. Amino acid sequence of long chain alpha-hydroxy acid oxidase from rat kidney, a member of the family of FMN-dependent alpha-hydroxy acid-oxidizing enzymes. J. Biol. Chem. 266: 20877-20881 (1991).
Distefano S, Palma JM, McCarthy I, del Rio LA. Proteolytic cleavage of plant proteins by peroxisomal endoproteases from senescent pea leaves. Planta 209: 308-313 (1999).
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Eisenhut M, Kahlon S, Hasse D, Ewald R, Lieman-Hurwitz J, Ogawa T, Ruth W, Bauwe H, Kaplan A, Hagemann M. The plant-like C2 glycolate pathway and the bacterial-like glycerate cycle cooperate in phosphoglycolate metabolism in cyanobacteria. Plant Physiol. 142: 333-342 (2006).
Fahnenstich H, Scarpeci TE, Valle EM, Flugge UI, Maurino VG. Generation of hydrogen peroxide in chloroplasts of Arabidopsis thaliana overexpressing glycolate oxidase as an inducible system to study oxidative stress. Plant Physiol. 148: 719-729 (2008).
Gong HJ, Zhu XY, Chen KM, Wang SM, Zhang CL. Silicon alleviates oxidative damage of wheat plants in pots under drought. Plant Sci. 169: 313-321 (2005).
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Guy RD, Fogel ML, Berry JA. Photosynthetic fractionation of the stable isotopes of oxygen and carbon. Plant Physiol. 101: 37-47 (1993).
Hanson KR. Stereochemical determination of carbon partitioning between photosynthesis and photorespiration in C3 plants: use of (3R)-D-[3-3H1, 3-14C]glyceric acid. Arch. Biochem. Biophys. 232: 58-75 (1984).
Hanson KR, Peterson RB. Photorespiration stoichiometry in leaves estimated by combined physical and stereochemical methods: allowance for isomerase-catalyzed 3H losses in ribulose bisphosphate regeneration. Arch. Biochem. Biophys. 252: 591-605 (1987).
Harrison-Lowe N, Olsen LJ. Isolation of glyoxysomes from pumpkin cotyledons. Curr. Protoc. Cell Biol. Chapter 3: Unit 3.19 (2006).
Jones JM, Morrell JC, Gould SJ. Identification and characterization of HAOX1, HAOX2, and HAOX3, three human peroxisomal 2-hydroxy acid oxidases. J. Biol. Chem. 275: 12590-12597 (2000).
Li XX, Franceschi VR. Distribution of peroxisomes and glycolate metabolism in relation to calcium oxalate formation in Lemna minor L. Eur. J. Cell Biol. 51: 9-16 (1990).
Lindqvist Y. Refined structure of spinach glycolate oxidase at 2 A resolution. J. Mol. Biol. 209: 151-166 (1989).
Lindqvist Y, Branden CI. Preliminary crystallographic data for glycolate oxidase from spinach. J. Biol. Chem. 254: 7403-7404 (1979).
Lindqvist Y, Branden CI. The active site of spinach glycolate oxidase. J. Biol. Chem. 264: 3624-3628 (1989).
Marrison JL, Onyeocha I, Baker A, Leech RM. Recognition of peroxisomes by immunofluorescence in transformed and untransformed tobacco cells. Plant Physiol. 103: 1055-1059 (1993).
Noctor G, Veljovic-Jovanovic S, Driscoll S, Novitskaya L, Foyer CH. Drought and oxidative load in the leaves of C3 plants: a predominant role for photorespiration? Ann. Bot. (Lond.) 89: 841-850 (2002).
Reumann S, Weber AP. Plant peroxisomes respire in the light: some gaps of the photorespiratory C2 cycle have become filled - others remain. Biochim. Biophys. Acta 1763: 1496-1510 (2006).
Rizhsky L, Liang H, Mittler R. The combined effect of drought stress and heat shock on gene expression in tobacco. Plant Physiol. 130: 1143-1151 (2002).
Romanowska E, Igamberdiev AU, Parys E, Gardestrom P. Stimulation of respiration by Pb2+ in detached leaves and mitochondria of C3 and C4 plants. Physiol. Plant. 116: 148-154 (2002).
Stenberg K, Lindqvist Y. Three-dimensional structures of glycolate oxidase with bound active-site inhibitors. Protein Sci. 6: 1009-1015 (1997).
Stenberg K, Lindqvist Y. High-level expression, purification, and crystallization of recombinant spinach glycolate oxidase in Escherichia coli. Protein Expr. Purif. 8: 295-298 (1996).
Tsou AY, Ransom SC, Gerlt JA, Buechter DD, Babbitt PC, Kenyon GL. Mandelate pathway of Pseudomonas putida: sequence relationships involving mandelate racemase, (S)-mandelate dehydrogenase, and benzoylformate decarboxylase and expression of benzoylformate decarboxylase in Escherichia coli. Biochemistry 29: 9856-9862 (1990).
Ueno O, Yoshimura Y, Sentoku N. Variation in the activity of some enzymes of photorespiratory metabolism in C4 grasses. Ann. Bot. (Lond.) 96: 863-869 (2005).
Urban P, Chirat I, Lederer F. Rat kidney L-2-hydroxyacid oxidase. Structural and mechanistic comparison with flavocytochrome b2 from baker's yeast. Biochemistry 27: 7365-7371 (1988).
van den Heuvel RHH, Svergun DI, Petoukhov MV, Coda A, Curti B, Ravasio S, Vanoni MA, Mattevi A. The active conformation of glutamate synthase and its binding to ferredoxin. J. Mol. Biol. 330: 113-128 (2003).
Vignaud C, Pietrancosta N, Williams EL, Rumsby G, Lederer F. Purification and characterization of recombinant human liver glycolate oxidase. Arch. Biochem. Biophys. 465: 410-416 (2007).
Volokita M, Somerville CR. The primary structure of spinach glycolate oxidase deduced from the DNA sequence of a cDNA clone. J. Biol. Chem. 262: 15825-15828 (1987).
Wilmanns M, Hyde CC, Davies DR, Kirschner K, Jansonius JN. Structural conservation in parallel beta/alpha-barrel enzymes that catalyze three sequential reactions in the pathway of tryptophan biosynthesis. Biochemistry 30: 9161-9169 (1991).
Xu H, Zhang J, Zeng J, Jiang L, Liu E, Peng C, He Z, Peng X. Inducible antisense suppression of glycolate oxidase reveals its strong regulation over photosynthesis in rice. J. Exp. Bot. 60: 1799-1809 (2009).
Xu HW, Ji XM, He ZH, Shi WP, Zhu GH, Niu JK, Li BS, Peng XX. Oxalate accumulation and regulation is independent of glycolate oxidase in rice leaves. J. Exp. Bot. 57: 1899-1908 (2006).
Yamaguchi K, Nishimura M. Reduction to below threshold levels of glycolate oxidase activities in transgenic tobacco enhances photoinhibition during irradiation. Plant Cell Physiol. 41: 1397-1406 (2000).
Zelitch I, Schultes NP, Peterson RB, Brown P, Brutnell TP. High glycolate oxidase activity is required for survival of maize in normal air. Plant Physiol. 149: 195-204 (2009).
Number of references = 42
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