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HORT640 - Metabolic Plant Physiology
References, methionine and salvage
Ashida H, Saito Y, Kojima C, Kobayashi K, Ogasawara N, Yokota A. A functional link between RuBisCO-like protein of Bacillus and photosynthetic RuBisCO. Science 302: 286-290 (2003).
Ashida H, Saito Y, Nakano T, Tandeau de Marsac N, Sekowska A, Danchin A, Yokota A. RuBisCO-like proteins as the enolase enzyme in the methionine salvage pathway: functional and evolutionary relationships between RuBisCO-like proteins and photosynthetic RuBisCO. J. Exp. Bot. 59: 1543-1554 (2008).
Backlund PS Jr, Smith RA. Methionine synthesis from 5'-methylthioadenosine in rat liver. J. Biol. Chem. 256: 1533-1535 (1981).
Batova A, Diccianni MB, Nobori T, Vu T, Yu J, Bridgeman L, Yu AL. Frequent deletion in the methylthioadenosine phosphorylase gene in T-cell acute lymphoblastic leukemia: strategies for enzyme-targeted therapy. Blood 88: 3083-3090 (1996).
Cooper AJL. The role of glutamine transaminase K (GTK) in sulfur and alpha-keto acid metabolism in the brain, and in the possible bioactivation of neurotoxicants. Neurochem. Int. 44: 557-577 (2004).
Cornell KA, Winter RW, Tower PA, Riscoe MK. Affinity purification of 5-methylthioribose kinase and 5-methylthioadenosine/S-adenosylhomocysteine nucleosidase from Klebsiella pneumoniae. Biochem. J. 317: 285-290 (1996).
Dumontet C, Roch AM, Quash G. Methionine dependence of tumor cells: programmed cell survival? Oncol. Res. 8: 469-471 (1996).
Gianotti AJ, Tower PA, Sheley JH, Conte PA, Spiro C, Ferro AJ, Fitchen JH, Riscoe MK. Selective killing of Klebsiella pneumoniae by 5-trifluoromethylthioribose. Chemotherapeutic exploitation of the enzyme 5-methylthioribose kinase. J. Biol. Chem. 265: 831-837 (1990).
Guranowski A, Paszewski A. Metabolism of 5'-methylthioadenosine in Aspergillus nidulans. An alternative pathway for methionine synthesis via utilization of the nucleoside methylthio group. Biochim. Biophys. Acta 717: 289-294 (1982).
Moffatt BA, Stevens YY, Allen MS, Snider JD, Pereira LA, Todorova MI, Summers PS, Weretilnyk EA, Martin-McCaffrey L, Wagner C. Adenosine kinase deficiency is associated with developmental abnormalities and reduced transmethylation. Plant Physiol. 128: 812-821 (2002).
Myers RW, Wray JW, Fish S, Abeles RH. Purification and characterization of an enzyme involved in oxidative carbon-carbon bond cleavage reactions in the methionine salvage pathway of Klebsiella pneumoniae. J. Biol. Chem. 268: 24785-24791 (1993).
Osuji GO, Madu WC. Regulation of peanut glutamate dehydrogenase by methionine sulphoximine. Phytochemistry 46: 817-825 (1997).
Pirkov I, Norbeck J, Gustafsson L, Albers E. A complete inventory of all enzymes in the eukaryotic methionine salvage pathway. FEBS J. 275: 4111-4120 (2008).
Sekowska A, Denervaud V, Ashida H, Michoud K, Haas D, Yokota A, Danchin A. Bacterial variations on the methionine salvage pathway. BMC Microbiol. 4: 9 (2004).
Sufrin JR, Meshnick SR, Spiess AJ, Garofalo-Hannan J, Pan XQ, Bacchi CJ. Methionine recycling pathways and antimalarial drug design. Antimicrob. Agents Chemother. 39: 2511-2515 (1995).
Thomas D, Becker A, Surdin-Kerjan Y. Reverse methionine biosynthesis from S-adenosylmethionine in eukaryotic cells. J. Biol. Chem. 275: 40718-40724 (2000).
Thomas T, Thomas TJ. Polyamines in cell growth and cell death: molecular mechanisms and therapeutic applications. Cell. Mol. Life Sci. 58: 244-258 (2001).
Whittaker DJ, Smith GS, Gardner RC. Expression of ethylene biosynthetic genes in Actinidia chinensis fruit. Plant Mol. Biol. 34: 45-55 (1997).
Wray JW, Abeles RH. The methionine salvage pathway in Klebsiella pneumoniae and rat liver. Identification and characterization of two novel dioxygenases. J. Biol. Chem. 270: 3147-3153 (1995).
Zhang Y, Zhang G, Zhang J, Wang X, Wang J. Mutagenesis of the enolase-phosphatase gene in Xanthomonas oryzae pv. oryzae affects growth on methylthioadenosine and in vivo S-adenosylmethionine pools. Arch. Microbiol. Sep 4 [Epub ahead of print] (2009).
Number of references = 20
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