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HORT640 - Metabolic Plant Physiology
References, glycine decarboxylase
Alexander FW, Sandmeier E, Mehta PK, Christen P. Evolutionary relationships among pyridoxal-5'-phosphate-dependent enzymes. Regio-specific alpha, beta and gamma families. Eur. J. Biochem. 219: 953-960 (1994).
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).
Bauwe H, Chu CC, Kopriva S, Nan Q. Structure and expression analysis of the gdcsPA and gdcsPB genes encoding two P-isoproteins of the glycine-cleavage system from Flaveria pringlei. Eur. J. Biochem. 234: 116-124 (1995).
Bauwe H, Kolukisaoglu U. Genetic manipulation of glycine decarboxylation. J. Exp. Bot. 54: 1523-1535 (2003).
Besson V, Rebeille F, Neuburger M, Douce R, Cossins EA. Effects of tetrahydrofolate polyglutamates on the kinetic parameters of serine hydroxymethyltransferase and glycine decarboxylase from pea leaf mitochondria. Biochem. J. 292: 425-430 (1993).
Beudeker RF, Tabita FR. Control of photorespiratory glycolate metabolism in an oxygen-resistant mutant of Chlorella sorokiniana. J. Bacteriol. 155: 650-656 (1983).
Bhuiyan NH, Hamada A, Yamada N, Rai V, Hibino T, Takabe T. Regulation of betaine synthesis by precursor supply and choline monooxygenase expression in Amaranthus tricolor. J. Exp. Bot. 58: 4203-4212 (2007).
Boneh A, Korman SH, Sato K, Kanno J, Matsubara Y, Lerer I, Ben-Neriah Z, Kure S. A single nucleotide substitution that abolishes the initiator methionine codon of the GLDC gene is prevalent among patients with glycine encephalopathy in Jerusalem. J. Hum. Genet. 50: 230-234 (2005).
Borland AM, Tecsi LI, Leegood RC, Walker RP. Inducibility of Crassulacean acid metabolism (CAM) in Clusia species; physiological/biochemical characterisation and intercellular localization of carboxylation and decarboxylation processes in three species which exhibit different degrees of CAM. Planta 205: 342-351 (1998).
Bourguignon J, Macherel D, Neuburger M, Douce R. Isolation, characterization, and sequence analysis of a cDNA clone encoding L-protein, the dihydrolipoamide dehydrogenase component of the glycine cleavage system from pea-leaf mitochondria. Eur. J. Biochem. 204: 865-873 (1992).
Bourguignon J, Merand V, Rawsthorne S, Forest E, Douce R. Glycine decarboxylase and pyruvate dehydrogenase complexes share the same dihydrolipoamide dehydrogenase in pea leaf mitochondria: evidence from mass spectrometry and primary-structure analysis. Biochem. J. 313: 229-234 (1996).
Bourguignon J, Neuburger M, Douce R. Resolution and characterization of the glycine-cleavage reaction in pea leaf mitochondria. Properties of the forward reaction catalysed by glycine decarboxylase and serine hydroxymethyltransferase. Biochem. J. 255: 169-178 (1988).
Bourguignon J, Vauclare P, Merand V, Forest E, Neuburger M, Douce R. Glycine decarboxylase complex from higher plants. Molecular cloning, tissue distribution and mass spectrometry analyses of the T protein. Eur. J. Biochem. 217: 377-386 (1993).
Bourot S, Sire O, Trautwetter A, Touze T, Wu LF, Blanco C, Bernard T. Glycine betaine-assisted protein folding in a lysA mutant of Escherichia coli. J. Biol. Chem. 275: 1050-1056 (2000).
Brautigam CA, Chuang JL, Tomchick DR, Machius M, Chuang DT. Crystal structure of human dihydrolipoamide dehydrogenase: NAD+/NADH binding and the structural basis of disease-causing mutations. J. Mol. Biol. 350: 543-552 (2005).
Breitkreuz KE, Shelp BJ. Subcellular compartmentation of the 4-aminobutyrate shunt in protoplasts from developing soybean cotyledons. Plant Physiol. 108: 99-103 (1995).
Bykova NV, Keerberg O, Parnik T, Bauwe H, Gardestrom P. Interaction between photorespiration and respiration in transgenic potato plants with antisense reduction in glycine decarboxylase. Planta 222: 130-140 (2005).
Bykova NV, Moller IM. Involvement of matrix NADP turnover in the oxidation of NAD-linked substrates by pea leaf mitochondria. Physiol. Plant. 111: 448-456 (2001).
Chandok MR, Ytterberg AJ, van Wijk KJ, Klessig DF. The pathogen-inducible nitric oxide synthase (iNOS) in plants is a variant of the P protein of the glycine decarboxylase complex. Cell 113: 469-482 (2003).
Choi YS, Cho YD. A new S-adenosylmethionine decarboxylase from soybean axes. Biochim. Biophys. Acta 1201: 466-472 (1994).
Cohen-Addad C, Faure M, Neuburger M, Ober R, Sieker L, Bourguignon J, Macherel D, Douce R. Structural studies of the glycine decarboxylase complex from pea leaf mitochondria. Biochimie 79: 637-643 (1997).
Cueva JG, Haverkamp S, Reimer RJ, Edwards R, Wassle H, Brecha NC. Vesicular gamma-aminobutyric acid transporter expression in amacrine and horizontal cells. J. Comp. Neurol. 445: 227-237 (2002).
Dever LV, Bailey KJ, Lacuesta M, Leegood RC, Lea PJ. The isolation and characterization of mutants of the C4 plant Amaranthus edulis. Comptes Rendus Acad. Sci. Ser. III-Sci. Vie-Life Sci. 319: 951-959 (1996).
Devi MT, Raghavendra AS. Photorespiration in C3-C4, intermediate species of Alternanthera and Parthenium: reduced ammonia production and increased capacity CO2 refixation in the light. Photosynth. Res. 38: 177-184 (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).
Dinopoulos A, Kure S, Chuck G, Sato K, Gilbert DL, Matsubara Y, Degrauw T. Glycine decarboxylase mutations: a distinctive phenotype of nonketotic hyperglycinemia in adults. Neurology 64: 1255-1257 (2005).
Douce R, Bourguignon J, Macherel D, Neuburger M. The glycine decarboxylase system in higher plant mitochondria: structure, function and biogenesis. Biochem. Soc. Trans. 22: 184-188 (1994).
Douce R, Bourguignon J, Neuburger M, Rebeille F. The glycine decarboxylase system: a fascinating complex. Trends Plant Sci. 6: 167-176 (2001).
Douce R, Neuburger M. Biochemical dissection of photorespiration. Curr. Opin. Plant Biol. 2: 214-222 (1999).
Dutilleul C, Driscoll S, Cornic G, De Paepe R, Foyer CH, Noctor G. Functional mitochondrial complex I is required by tobacco leaves for optimal photosynthetic performance in photorespiratory conditions and during transients. Plant Physiol. 131: 264-275 (2003).
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).
Engel N, van den Daele K, Kolukisaoglu U, Morgenthal K, Weckwerth W, Parnik T, Keerberg O, Bauwe H. Deletion of glycine decarboxylase in Arabidopsis is lethal under nonphotorespiratory conditions. Plant Physiol. 144: 1328-1335 (2007).
Ewald R, Kolukisaoglu U, Bauwe U, Mikkat S, Bauwe H. Mitochondrial protein lipoylation does not exclusively depend on the mtKAS pathway of de-novo fatty acid synthesis in Arabidopsis. Plant Physiol. 145: 41-48 (2007).
Faure M, Bourguignon J, Neuburger M, MacHerel D, Sieker L, Ober R, Kahn R, Cohen-Addad C, Douce R. Interaction between the lipoamide-containing H-protein and the lipoamide dehydrogenase (L-protein) of the glycine decarboxylase multienzyme system. 2. Crystal structures of H- and L-proteins. Eur. J. Biochem. 267: 2890-2898 (2000).
Flusser H, Korman SH, Sato K, Matsubara Y, Galil A, Kure S. Mild glycine encephalopathy (NKH) in a large kindred due to a silent exonic GLDC splice mutation. Neurology 64: 1426-1430 (2005).
Fujiwara K, Okamura-Ikeda K, Motokawa Y. Amino acid sequence of the phosphopyridoxyl peptide from P-protein of the chicken liver glycine cleavage system. Biochem. Biophys. Res. Commun. 149: 621-627 (1987).
Gamarnik A, Frydman R. Cadaverine, an essential diamine for the normal root development of germinating soybean (Glycine max) seeds. Plant Physiol. 97: 778-785 (1991).
Gelling CL, Piper MD, Hong SP, Kornfeld GD, Dawes IW. Identification of a novel one-carbon metabolism regulon in Saccharomyces cerevisiae. J. Biol. Chem. 279: 7072-7081 (2004).
Gueguen V, Macherel D, Neuburger M, Pierre CS, Jaquinod M, Gans P, Douce R, Bourguignon J. Structural and functional characterization of H protein mutants of the glycine decarboxylase complex. J. Biol. Chem. 274: 26344-26352 (1999).
Guilhaudis L, Simorre JP, Blackledge M, Marion D, Gans P, Neuburger M, Douce R. Combined structural and biochemical analysis of the H-T complex in the glycine decarboxylase cycle: evidence for a destabilization mechanism of the H-protein. Biochemistry 39: 4259-4266 (2000).
Guilhaudis L, Simorre JP, Blackledge M, Neuburger M, Bourguignon J, Douce R, Marion D, Gans P. Investigation of the local structure and dynamics of the H subunit of the mitochondrial glycine decarboxylase using heteronuclear NMR spectroscopy. Biochemistry 38: 8334-8346 (1999).
Guilhaudis L, Simorre JP, Bouchayer E, Neuburger M, Bourguignon J, Douce R, Marion D, Gans P. Backbone and sequence-specific assignment of three forms of the lipoate-containing H-protein of the glycine decarboxylase complex. J. Biomol. NMR 15: 185-186 (1999).
Guinel FC, Ireland RJ. Immunogold localization and quantitative distribution of two proteins of the glycine decarboxylase complex in developing leaflets of pea (Pisum sativum L). Int. J. Plant Sci. 157: 539-545 (1996).
Hagemann M, Vinnemeier J, Oberpichler I, Boldt R, Bauwe H. The glycine decarboxylase complex is not essential for the cyanobacterium Synechocystis sp. strain PCC 6803. Plant Biol. (Stuttg.) 7: 15-22 (2005).
Hartung W, Ratcliffe RG. Utilization of glycine and serine as nitrogen sources in the roots of Zea mays and Chamaegigas intrepidus. J. Exp. Bot. 53: 2305-2314 (2002).
Heineke D, Bykova N, Gardestrom P, Bauwe H. Metabolic response of potato plants to an antisense reduction of the P-protein of glycine decarboxylase. Planta 212: 880-887 (2001).
Hiraga K, Kikuchi G. The mitochondrial glycine cleavage system: differential inhibition by divalent cations of glycine synthesis and glycine decarboxylation in the glycine-CO2 exchange. J. Biochem. (Tokyo) 92: 937-944 (1982).
Hiraga K, Kikuchi G. The mitochondrial glycine cleavage system: inactivation of glycine decarboxylase as a side reaction of the glycine decarboxylation in the presence of aminomethyl carrier protein. J. Biochem. (Tokyo) 92: 1489-1498 (1982).
Ho CL, Saito K. Molecular biology of the plastidic phosphorylated serine biosynthetic pathway in Arabidopsis thaliana. Amino Acids 20: 243-259 (2001).
Hong SP, Piper MD, Sinclair DA, Dawes IW. Control of expression of one-carbon metabolism genes of Saccharomyces cerevisiae is mediated by a tetrahydrofolate-responsive protein binding to a glycine regulatory region including a core 5'-CTTCTT-3' motif. J. Biol. Chem. 274: 10523-10532 (1999).
Huai Q, Xia Y, Chen Y, Callahan B, Li N, Ke H. Crystal structures of 1-aminocyclopropane-1-carboxylate (ACC) synthase in complex with aminoethoxyvinylglycine and pyridoxal-5'-phosphate provide new insight into catalytic mechanisms. J. Biol. Chem. 276: 38210-38216 (2001).
Igamberdiev AU, Bykova NV, Gardestrom P. Involvement of cyanide-resistant and rotenone-insensitive pathways of mitochondrial electron transport during oxidation of glycine in higher plants. FEBS Lett. 412: 265-269 (1997).
Igamberdiev AU, Bykova NV, Kleczkowski LA. Origins and metabolism of formate in higher plants. Plant Physiol. Biochem. 37: 503-513 (1999).
Igamberdiev AU, Bykova NV, Lea PJ, Gardestrom P. The role of photorespiration in redox and energy balance of photosynthetic plant cells: A study with a barley mutant deficient in glycine decarboxylase. Physiol. Plant. 111: 427-438 (2001).
Isupov MN, Antson AA, Dodson EJ, Dodson GG, Dementieva IS, Zakomirdina LN, Wilson KS, Dauter Z, Lebedev AA, Harutyunyan EH. Crystal structure of tryptophanase. J. Mol. Biol. 276: 603-623 (1998).
Ivlev AA, Bykova NV, Igamberdiev AU. Fractionation of carbon (13C/12C) isotopes in glycine decarboxylase reaction. FEBS Lett. 386: 174-176 (1996).
Kim HS, Kim BH, Cho YD. Purification and characterization of monomeric lysine decarboxylase from soybean (Glycine max) axes. Arch. Biochem. Biophys. 354: 40-46 (1998).
Kim Y, Oliver DJ. Molecular cloning, transcriptional characterization, and sequencing of cDNA encoding the H-protein of the mitochondrial glycine decarboxylase complex in peas. J. Biol. Chem. 265: 848-853 (1990).
Kopriva S, Bauwe H. T-protein of glycine decarboxylase from Solanum tuberosum. Plant Physiol. 104: 1079-1080 (1994).
Kopriva S, Bauwe H. P-protein of glycine decarboxylase from Flaveria pringlei. Plant Physiol. 104: 1077-1078 (1994).
Kopriva S, Turner SR, Rawsthorne S, Bauwe H. T-protein of the glycine decarboxylase multienzyme complex: evidence for partial similarity to formyltetrahydrofolate synthetase. Plant Mol. Biol. 27: 1215-1220 (1995).
Kume A, Koyata H, Sakakibara T, Ishiguro Y, Kure S, Hiraga K. The glycine cleavage system. Molecular cloning of the chicken and human glycine decarboxylase cDNAs and some characteristics involved in the deduced protein structures. J. Biol. Chem. 266: 3323-3329 (1991).
Kure S, Narisawa K, Tada K. Structural and expression analyses of normal and mutant mRNA encoding glycine decarboxylase: three-base deletion in mRNA causes nonketotic hyperglycinemia. Biochem. Biophys. Res. Commun. 174: 1176-1182 (1991).
Lara MV, Offermann S, Smith M, Okita TW, Andreo CS, Edwards GE. Leaf development in the single-cell C4 system in Bienertia sinuspersici: expression of genes and peptide levels for C4 metabolism in relation to chlorenchyma structure under different light conditions. Plant Physiol. 148: 593-610 (2008).
Lee IS, Muragaki Y, Ideguchi T, Hase T, Tsuji M, Ooshima A, Okuno E, Kido R. Molecular cloning and sequencing of a cDNA encoding alanine-glyoxylate aminotransferase 2 from rat kidney. J. Biochem. (Tokyo) 117: 856-862 (1995).
Lenne C, Neuburger M, Douce R. Effect of high physiological temperatures on NAD+ content of green leaf mitochondria. Apparent inhibition of glycine oxidation. Plant Physiol. 102: 1157-1162 (1993).
Li R, Moore M, King J. Investigating the regulation of one-carbon metabolism in Arabidopsis thaliana. Plant Cell Physiol. 44: 233-241 (2003).
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).
Luethy MH, Gemel J, Johnston ML, Mooney BP, Miernyk JA, Randall DD. Developmental expression of the mitochondrial pyruvate dehydrogenase complex in pea (Pisum sativum) seedlings. Physiol. Plant. 112: 559-566 (2001).
Lutziger I, Oliver DJ. Molecular evidence of a unique lipoamide dehydrogenase in plastids: analysis of plastidic lipoamide dehydrogenase from Arabidopsis thaliana. FEBS Lett. 484: 12-16 (2000).
Macherel D, Bourguignon J, Douce R. Cloning of the gene (gdcH) encoding H-protein, a component of the glycine decarboxylase complex of pea (Pisum sativum L.). Biochem. J. 286: 627-630 (1992).
Macherel D, Bourguignon J, Forest E, Faure M, Cohen-Addad C, Douce R. Expression, lipoylation and structure determination of recombinant pea H-protein in Escherichia coli. Eur. J. Biochem. 236: 27-33 (1996).
Macherel D, Lebrun M, Gagnon J, Neuburger M, Douce R. cDNA cloning, primary structure and gene expression for H-protein, a component of the glycine-cleavage system (glycine decarboxylase) of pea (Pisum sativum) leaf mitochondria. Biochem. J. 268: 783-789 (1990).
Man HM, Kaiser WM. Increased glutamine synthetase activity and changes in amino acid pools in leaves treated with 5-aminoimidazole-4-carboxiamide ribonucleoside (AICAR). Physiol. Plant. 111: 291-296 (2001).
Marvin ME, Williams PH, Cashmore AM. The isolation and characterisation of a Saccharomyces cerevisiae gene (LIP2) involved in the attachment of lipoic acid groups to mitochondrial enzymes. FEMS Microbiol. Lett. 199: 131-136 (2001).
Mehta PK, Christen P. Homology of 1-aminocyclopropane-1-carboxylate synthase, 8-amino-7-oxononanoate synthase, 2-amino-6-caprolactam racemase, 2,2-dialkylglycine decarboxylase, glutamate-1-semialdehyde 2,1-aminomutase ... with aminotransferases. Biochem. Biophys. Res. Commun. 198: 138-143 (1994).
Millar AH, Leaver CJ. The cytotoxic lipid peroxidation product, 4-hydroxy-2-nonenal, specifically inhibits decarboxylating dehydrogenases in the matrix of plant mitochondria. FEBS Lett. 481: 117-121 (2000).
Moller IM, Kristensen BK. Protein oxidation in plant mitochondria as a stress indicator. Photochem. Photobiol. Sci. 3: 730-735 (2004).
Moran JF, Sun ZH, Sarath G, Arredondo-Peter R, James EK, Becana M, Klucas RV. Molecular cloning, functional characterization, and subcellular localization of soybean nodule dihydrolipoamide reductase. Plant Physiol. 128: 300-313 (2002).
Mouillon JM, Aubert S, Bourguignon J, Gout E, Douce R, Rebeille F. Glycine and serine catabolism in non-photosynthetic higher plant cells: their role in C1 metabolism. Plant J. 20: 197-205 (1999).
Navarre DA, Wolpert TJ. Victorin induction of an apoptotic/senescence-like response in oats. Plant Cell 11: 237-249 (1999).
Navarre DA, Wolpert TJ. Inhibition of the glycine decarboxylase multienzyme complex by the host-selective toxin victorin. Plant Cell 7: 463-471 (1995).
Neuburger M, Polidori AM, Pietre E, Faure M, Jourdain A, Bourguignon J, Pucci B, Douce R. Interaction between the lipoamide-containing H-protein and the lipoamide dehydrogenase (L-protein) of the glycine decarboxylase multienzyme system. 1. Biochemical studies. Eur. J. Biochem. 267: 2882-2889 (2000).
Nijhout HF, Gregory JF, Fitzpatrick C, Cho E, Lamers KY, Ulrich CM, Reed MC. A mathematical model gives insights into the effects of vitamin B-6 deficiency on 1-carbon and glutathione metabolism. J. Nutr. 139: 784-791 (2009).
Novitskaya L, Trevanion SJ, Driscoll S, Foyer CH, Noctor G. How does photorespiration modulate leaf amino acid contents? A dual approach through modelling and metabolite analysis. Plant Cell Environ. 25: 821-835 (2002).
Ogur M, Liu TN, Cheung I, Paulavicius I, Wales W, Mehnert D, Blaise D. "Active" one-carbon generation in Saccharomyces cerevisiae. J. Bacteriol. 129: 926-933 (1977).
Oliver DJ, Raman R. Glycine decarboxylase: protein chemistry and molecular biology of the major protein in leaf mitochondria. J. Bioenerg. Biomembr. 27: 407-414 (1995).
Pascarella S, Schirch V, Bossa F. Similarity between serine hydroxymethyltransferase and other pyridoxal phosphate-dependent enzymes. FEBS Lett. 331: 145-149 (1993).
Pascarella S, Schirch V, Bossa F. Similarity between serine hydroxymethyltransferase and other pyridoxal phosphate-dependent enzymes. FEBS Lett. 331: 145-149 (1993).
Piper MD, Hong SP, Ball GE, Dawes IW. Regulation of the balance of one-carbon metabolism in Saccharomyces cerevisiae. J. Biol. Chem. 275: 30987-30995 (2000).
Potter E, Beator J, Kloppstech K. The expression of mRNAs for light-stress proteins in barley: inverse relationship of mRNA levels of individual genes within the leaf gradient. Planta 199: 314-320 (1996).
Prabhu V, Chatson KB, Abrams GD, King J. 13C nuclear magnetic resonance detection of interactions of serine hydroxymethyltransferase with C1-tetrahydrofolate synthase and glycine decarboxylase complex activities in Arabidopsis. Plant Physiol. 112: 207-216 (1996).
Prabhu V, Chatson KB, Lui H, Abrams GD, King J. Effects of sulfanilamide and methotrexate on 13C fluxes through the glycine decarboxylase/serine hydroxymethyltransferase enzyme system in Arabidopsis. Plant Physiol. 116: 137-144 (1998).
Qu K, Martin DL, Lawrence CE. Motifs and structural fold of the cofactor binding site of human glutamate decarboxylase. Protein Sci. 7: 1092-1105 (1998).
Rajinikanth M, Harding SA, Tsai CJ. The glycine decarboxylase complex multienzyme family in Populus. J. Exp. Bot. 58: 1761-1770 (2007).
Ramputh AL, Bown AW. Rapid gamma-aminobutyric acid synthesis and the inhibition of the growth and development of oblique banded leaf roller larvae. Plant Physiol. 111: 1349-1352 (1996).
Rebeille F, Neuburger M, Douce R. Interaction between glycine decarboxylase, serine hydroxymethyltransferase and tetrahydrofolate polyglutamates in pea leaf mitochondria. Biochem. J. 302: 223-228 (1994).
Ro HS. Effects of salts on the conformation and catalytic properties of D-amino acid aminotransferase. J. Biochem. Mol. Biol. 35: 306-312 (2002).
Roberts JKM. NMR adventures in the metabolic labyrinth within plants. Trends Plant Sci. 5: 30-34 (2000).
Roche O, Field MJ. Theoretical study of the conformation of the lipoamide arm in a mutant H protein. Proteins 45: 237-240 (2001).
Rontein D, Rhodes D, Hanson AD. Evidence from engineering that decarboxylation of free serine is the major source of ethanolamine moieties in plants. Plant Cell Physiol. 44: 1185-1191 (2003).
Rylott EL, Metzlaff K, Rawsthorne S. Developmental and environmental effects on the expression of the C3-C4 intermediate phenotype in Moricandia arvensis. Plant Physiol. 118: 1277-1284 (1998).
Sabar M, De Paepe R, de Kouchkovsky Y. Complex I impairment, respiratory compensations, and photosynthetic decrease in nuclear and mitochondrial male sterile mutants of Nicotiana sylvestris. Plant Physiol. 124: 1239-1250 (2000).
Sandmeier E, Hale TI, Christen P. Multiple evolutionary origin of pyridoxal-5'-phosphate-dependent amino acid decarboxylases. Eur. J. Biochem. 221: 997-1002 (1994).
Schwartz HL, Chandonia JM, Kash SF, Kanaani J, Tunnell E, Domingo A, Cohen FE, Banga JP, Madec AM, Richter W, Baekkeskov S. High-resolution autoreactive epitope mapping and structural modeling of the 65 kDa form of human glutamic acid decarboxylase. J. Mol. Biol. 287: 983-999 (1999).
Sellner L, Edkins E, Greed L, Lewis B. Detection of mutations in the glycine decarboxylase gene in patients with nonketotic hyperglycinaemia. Mol. Genet. Metab. 84: 167-171 (2005).
Serraj R, Shelp BJ, Sinclair TR. Accumulation of gamma-aminobutyric acid in nodulated soybean in response to drought stress. Physiol. Plant. 102: 79-86 (1998).
Shelp BJ, Walton CS, Snedden WA, Tuin LG, Oresnik IJ, Layzell DB. GABA shunt in developing soybean seeds is associated with hypoxia. Physiol. Plant. 94: 219-228 (1995).
Shen BW, Hennig M, Hohenester E, Jansonius JN, Schirmer T. Crystal structure of human recombinant ornithine aminotransferase. J. Mol. Biol. 277: 81-102 (1998).
Sherwin AL. Neuroactive amino acids in focally epileptic human brain: a review. Neurochem. Res. 24: 1387-1395 (1999).
Shinka T, Kure S, Sakata Y, Takayanagi M, Matsubara Y, Narisawa K. Assignment of Gldc encoding glycine decarboxylase to mouse chromosome 19C by in situ hybridization and a CA repeat polymorphism in the Gldc gene. Cytogenet. Cell Genet. 83: 260-261 (1998).
Sieker L, Cohen-Addad C, Neuburger M, Douce R. Crystallographic data for H-protein from the glycine decarboxylase complex. J. Mol. Biol. 220: 223-224 (1991).
Sinclair DA, Dawes IW. Genetics of the synthesis of serine from glycine and the utilization of glycine as sole nitrogen source by Saccharomyces cerevisiae. Genetics 140: 1213-1222 (1995).
Sinclair DA, Hong SP, Dawes IW. Specific induction by glycine of the gene for the P-subunit of glycine decarboxylase from Saccharomyces cerevisiae. Mol. Microbiol. 19: 611-623 (1996).
Somerville CR, Ogren WL. Mutants of the cruciferous plant Arabidopsis thaliana lacking glycine decarboxylase activity. Biochem. J. 202: 373-380 (1982).
Srinivasan R, Oliver DJ. Light-dependent and tissue-specific expression of the H-protein of the glycine decarboxylase complex. Plant Physiol. 109: 161-168 (1995).
Takayanagi M, Kure S, Sakata Y, Kurihara Y, Ohya Y, Kajita M, Tada K, Matsubara Y, Narisawa K. Human glycine decarboxylase gene (GLDC) and its highly conserved processed pseudogene (psiGLDC): their structure and expression, and the identification of a large deletion in a family with nonketotic hyperglycinemia. Hum. Genet. 106: 298-305 (2000).
Thompson P, Bowsher CG, Tobin AK. Heterogeneity of mitochondrial protein biogenesis during primary leaf development in barley. Plant Physiol. 118: 1089-1099 (1998).
Toney MD, Pascarella S, De Biase D. Active site model for gamma-aminobutyrate aminotransferase explains substrate specificity and inhibitor reactivities. Protein Sci. 4: 2366-2374 (1995).
Toone JR, Applegarth DA, Coulter-Mackie MB, James ER. Recurrent mutations in P- and T-proteins of the glycine cleavage complex and a novel N-protein mutation (N145I): a strategy for the molecular investigation of patients with nonketotic hyperglycinemia (NKH). Mol. Genet. Metab. 72: 322-325 (2001).
Touze T, Gouesbet G, Boiangiu C, Jebbar M, Bonnassie S, Blanco C. Glycine betaine loses its osmoprotective activity in a bspA strain of Erwinia chrysanthemi. Mol. Microbiol. 42: 87-99 (2001).
Tuin LG, Shelp BJ. In situ [C-14]glutamate metabolism by developing soybean cotyledons. 2. The importance of glutamate decarboxylation. J. Plant Physiol. 147: 714-720 (1996).
Turano FJ, Kramer GF, Wang CY. The effect of methionine, ethylene and polyamine catabolic intermediates on polyamine accumulation in detached soybean leaves. Physiol. Plant. 101: 510-518 (1997).
Turner SR, Hellens R, Ireland R, Ellis N, Rawsthorne S. The organisation and expression of the genes encoding the mitochondrial glycine decarboxylase complex and serine hydroxymethyltransferase in pea (Pisum sativum). Mol. Gen. Genet. 236: 402-408 (1993).
Turner SR, Ireland R, Rawsthorne S. Purification and primary amino acid sequence of the L subunit of glycine decarboxylase. Evidence for a single lipoamide dehydrogenase in plant mitochondria. J. Biol. Chem. 267: 7745-7750 (1992).
Ueno O. Ultrastructural localization of photosynthetic and photorespiratory enzymes in epidermal, mesophyll, bundle sheath, and vascular bundle cells of the C(4) dicot Amaranthus viridis. J. Exp. Bot. 52: 1003-1013 (2001).
Ueno O, Bang SW, Wada Y, Kondo A, Ishihara K, Kaneko Y, Matsuzawa Y. Structural and biochemical dissection of photorespiration in hybrids differing in genome constitution between Diplotaxis tenuifolia (C3-C4)) and radish (C3). Plant Physiol. 132: 1550-1559 (2003).
Ueno O, Sentoku N. Comparison of leaf structure and photosynthetic characteristics of C-3 and C-4 Alloteropsis semialata subspecies. Plant Cell Environ. 29: 257-268 (2006).
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).
Vauclare P, Diallo N, Bourguignon J, Macherel D, Douce R. Regulation of the expression of the glycine decarboxylase complex during pea leaf development. Plant Physiol. 112: 1523-1530 (1996).
Vauclare P, Macherel D, Douce R, Bourguignon J. The gene encoding T protein of the glycine decarboxylase complex involved in the mitochondrial step of the photorespiratory pathway in plants exhibits features of light-induced genes. Plant Mol. Biol. 37: 309-318 (1998).
Voll LM, Jamai A, Renne P, Voll H, McClung CR, Weber AP. The photorespiratory Arabidopsis shm1 mutant is deficient in SHM1. Plant Physiol. 140: 59-66 (2006).
Voznesenskaya EV, Franceschi VR, Kiirats O, Artyusheva EG, Freitag H, Edwards GE. Proof of C4 photosynthesis without Kranz anatomy in Bienertia cycloptera (Chenopodiaceae). Plant J. 31: 649-662 (2002).
Walker JL, Oliver DJ. Light-induced increases in the glycine decarboxylase multienzyme complex from pea leaf mitochondria. Arch. Biochem. Biophys. 248: 626-638 (1986).
Walker JL, Oliver DJ. Glycine decarboxylase multienzyme complex. Purification and partial characterization from pea leaf mitochondria. J. Biol. Chem. 261: 2214-2221 (1986).
Wang YS, Harding SA, Tsai CJ. Expression of a glycine decarboxylase complex H-protein in non-photosynthetic tissues of Populus tremuloides. Biochim. Biophys. Acta 1676: 266-272 (2004).
Wendehenne D, Lamotte O, Pugin A. Plant iNOS: conquest of the Holy Grail. Trends Plant Sci. 8: 465-468 (2003).
Wingler A, Lea PJ, Leegood RC. Control of photosynthesis in barley plants with reduced activities of glycine decarboxylase. Planta 202: 171-178 (1997).
Wingler A, Lea PJ, Leegood RC. Photorespiratory metabolism of glyoxylate and formate in glycine-accumulating mutants of barley and Amaranthus edulis. Planta 207: 518-526 (1999).
Wingler A, Quick WP, Bungard RA, Bailey KJ, Lea PJ, Leegood RC. The role of photorespiration during drought stress: an analysis utilizing barley mutants with reduced activities of photorespiratory enzymes. Plant Cell Environ. 22: 361-373 (1999).
Winkel-Shirley B. Evidence for enzyme complexes in the phenylpropanoid and flavonoid pathways. Physiol. Plant. 107: 142-149 (1999).
Yang YG, Cho YD. Purification of S-adenosylmethionine decarboxylase from soybean. Biochem. Biophys. Res. Commun. 181: 1181-1186 (1991).
Yao N, Tada Y, Sakamoto M, Nakayashiki H, Park P, Tosa Y, Mayama S. Mitochondrial oxidative burst involved in apoptotic response in oats. Plant J. 30: 567-579 (2002).
Yasuno R, Wada H. Biosynthesis of lipoic acid in Arabidopsis: cloning and characterization of the cDNA for lipoic acid synthase. Plant Physiol. 118: 935-943 (1998).
Yoshimura Y, Kubota F, Ueno O. Structural and biochemical bases of photorespiration in C4 plants: quantification of organelles and glycine decarboxylase. Planta 220: 307-317 (2004).
Zaman Z, Bowman SB, Kornfeld GD, Brown AJ, Dawes IW. Transcription factor GCN4 for control of amino acid biosynthesis also regulates the expression of the gene for lipoamide dehydrogenase. Biochem. J. 340: 855-862 (1999).
Zhang GJ, Bown AW. The rapid determination of gamma-aminobutyric acid. Phytochemistry 44: 1007-1009 (1997).
Zhang Q, Wiskich JT. Activation of glycine decarboxylase in pea leaf mitochondria by ATP. Arch. Biochem. Biophys. 320: 250-256 (1995).
Number of references = 148
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