Bürstenbinder K, Rzewuski G, Wirtz M, Hell R, Sauter M (2007) The role of methionine recycling
for ethylene synthesis in Arabidopsis. Plant J 49:238–249
Bussell JD, Keech O, Fenske R, Smith SM (2013) Requirement for the plastidial oxidative pentose
phosphate pathway for nitrate assimilation in Arabidopsis. Plant J 75:578–591
Capitani G, Hohenester E, Feng L, Storici P, Kirsch JF, Jansonius JN (1999) Structure of
1-aminocyclopropane-1-carboxylate synthase, a key enzyme in the biosynthesis of the plant
hormone ethylene. J Mol Biol 294:745–756
Capitani G, McCarthy DL, Gut H, Grutter MG, Kirsch JF (2002) Apple 1-aminocyclopropane-1carboxylate synthase in complex with the inhibitor L-aminoethoxyvinylglycine. Evidence for a
ketimine intermediate. J Biol Chem 277:49735–49742
Capitani G, Tschopp M, Eliot AC, Kirsch JF, Grutter MG (2005) Structure of ACC synthase
inactivated by the mechanism-based inhibitor L-vinylglycine. FEBS Lett 579:2458–2462
Cascales-Miñana B, Muños-Berthomeu J, Flores-Tomero M, Anoman AD, Pertusa J, Alaiz M,
Osorio S, Fernie AR, Segura J, Ros R (2013) The phosphorylated pathway of serine biosynthesis is essential both for male gametophyte and embryo development and for root growth in
Arabidopsis. Plant Cell 25:2084–2101
Castilho BA, Shanmugam R, Silva RC, Ramesh R, Himme BM, Sattleger E (2014) Keeping the
eIF2 alpha kinase Gcn2 in check. Biochim Biophys Acta 1843:1948–1968
Chae HS, Kieber JJ (2005) Eto Brute? Role of ACS turnover in regulating ethylene biosynthesis.
Trends Plant Sci 10:291–296
Chen H, Xiong L (2009a) Localized auxin biosynthesis and postembryonic root development in
Arabidopsis. Plant Signal Behav 4:752–754
Chen H, Xiong L (2009b) The short-rooted vitamin B 6 -deficient mutant pdx1 has impaired local
auxin biosynthesis. Planta 229:1303–1310
Chen Y, Zou T, McCormick S (2016) S-adenosylmethionine synthetase 3 is important for pollen
tube growth. Plant Physiol 172:244–253
Chiba Y, Ishikawa M, Kijima F, Tyson RH, Kim J, Yamamoto A, Nambara E, Leustek T,
Wallsgrove RM, Naito S (1999) Evidence for autoregulation of cystathionine gamma-synthase
mRNA stability in Arabidopsis. Science 286(5443):1371–1374
Chiu JC, Brenner ED, DeSalle R, Nitabach MN, Holmes TC, Coruzzi GM (2002) Phylogenetic
and expression analysis of the glutamate-receptor–like gene family in Arabidopsis thaliana.
Mol Biol Evol 19:1066–1082
Cho MH, Corea OR, Yang H, Bedgar DL, Laskar DD, Anterola AM, Moog-Anterola FA, Hood RL,
Kohalmi SE, Bernards MA, Kang C, Davin LB, Lewis NG (2007) Phenylalanine biosynthesis in
Arabidopsis thaliana. Identification and characterization of arogenate dehydratases. J Biol Chem
282:30827–30835
Christen P, Mehta PK (2001) From cofactor to enzymes. The molecular evolution of pyridoxal5
0 -phosphate-dependent enzymes. Chem Rec 1:436–447
Clandinin MT, Cossins EA (1974) Methionine biosynthesis in isolated Pisum sativum mitochondria. Phytochemistry 13:585–591
Clausen T, Huber R, Messerschmidt A, Pohlenz HD, Laber B (1997) Slow-binding inhibition of
Escherichia coli cystathionine β-lyase by L-aminoethoxyvinylglycine: a kinetic and X-ray
study. Biochemist 36:12633–12643
Colinas M, Esenhut M, Tohge T, Pesquera M, Fernie AR, Weber APM, Fiztpatrick TB (2016)
Balancing of B6 vitaminers is essential for plant development and metabolism in Arabidopsis.
Plant Cell 28:439–453
Cornell NW, Zuurendonk PF, Kerich MJ, Straight CB (1984) Selective inhibition of alanine
aminotransferase and aspartate aminotransferase in rat hepatocytes. Biochem J 220:707–716
Coruzzi GM (2003) Primary N-assimilation into amino acids in Arabidopsis. In: Somerville CR,
Meyerowitz EM (eds) The Arabidopsis book. American Society of Plant Biologists, Rockville,
pp 1–17
Coruzzi GM, Last RL (2000) Amino acids. In: Buchanan RB, Gruissem W, Jones R (eds)
Biochemistry and molecular biology of plants. American Society of Plant Physiologists,
Rockville, pp 358–410
From Aspartate to Ethylene: Central Role of N, C, and S Shuttles by. . .
283
for ethylene synthesis in Arabidopsis. Plant J 49:238–249
Bussell JD, Keech O, Fenske R, Smith SM (2013) Requirement for the plastidial oxidative pentose
phosphate pathway for nitrate assimilation in Arabidopsis. Plant J 75:578–591
Capitani G, Hohenester E, Feng L, Storici P, Kirsch JF, Jansonius JN (1999) Structure of
1-aminocyclopropane-1-carboxylate synthase, a key enzyme in the biosynthesis of the plant
hormone ethylene. J Mol Biol 294:745–756
Capitani G, McCarthy DL, Gut H, Grutter MG, Kirsch JF (2002) Apple 1-aminocyclopropane-1carboxylate synthase in complex with the inhibitor L-aminoethoxyvinylglycine. Evidence for a
ketimine intermediate. J Biol Chem 277:49735–49742
Capitani G, Tschopp M, Eliot AC, Kirsch JF, Grutter MG (2005) Structure of ACC synthase
inactivated by the mechanism-based inhibitor L-vinylglycine. FEBS Lett 579:2458–2462
Cascales-Miñana B, Muños-Berthomeu J, Flores-Tomero M, Anoman AD, Pertusa J, Alaiz M,
Osorio S, Fernie AR, Segura J, Ros R (2013) The phosphorylated pathway of serine biosynthesis is essential both for male gametophyte and embryo development and for root growth in
Arabidopsis. Plant Cell 25:2084–2101
Castilho BA, Shanmugam R, Silva RC, Ramesh R, Himme BM, Sattleger E (2014) Keeping the
eIF2 alpha kinase Gcn2 in check. Biochim Biophys Acta 1843:1948–1968
Chae HS, Kieber JJ (2005) Eto Brute? Role of ACS turnover in regulating ethylene biosynthesis.
Trends Plant Sci 10:291–296
Chen H, Xiong L (2009a) Localized auxin biosynthesis and postembryonic root development in
Arabidopsis. Plant Signal Behav 4:752–754
Chen H, Xiong L (2009b) The short-rooted vitamin B 6 -deficient mutant pdx1 has impaired local
auxin biosynthesis. Planta 229:1303–1310
Chen Y, Zou T, McCormick S (2016) S-adenosylmethionine synthetase 3 is important for pollen
tube growth. Plant Physiol 172:244–253
Chiba Y, Ishikawa M, Kijima F, Tyson RH, Kim J, Yamamoto A, Nambara E, Leustek T,
Wallsgrove RM, Naito S (1999) Evidence for autoregulation of cystathionine gamma-synthase
mRNA stability in Arabidopsis. Science 286(5443):1371–1374
Chiu JC, Brenner ED, DeSalle R, Nitabach MN, Holmes TC, Coruzzi GM (2002) Phylogenetic
and expression analysis of the glutamate-receptor–like gene family in Arabidopsis thaliana.
Mol Biol Evol 19:1066–1082
Cho MH, Corea OR, Yang H, Bedgar DL, Laskar DD, Anterola AM, Moog-Anterola FA, Hood RL,
Kohalmi SE, Bernards MA, Kang C, Davin LB, Lewis NG (2007) Phenylalanine biosynthesis in
Arabidopsis thaliana. Identification and characterization of arogenate dehydratases. J Biol Chem
282:30827–30835
Christen P, Mehta PK (2001) From cofactor to enzymes. The molecular evolution of pyridoxal5
0 -phosphate-dependent enzymes. Chem Rec 1:436–447
Clandinin MT, Cossins EA (1974) Methionine biosynthesis in isolated Pisum sativum mitochondria. Phytochemistry 13:585–591
Clausen T, Huber R, Messerschmidt A, Pohlenz HD, Laber B (1997) Slow-binding inhibition of
Escherichia coli cystathionine β-lyase by L-aminoethoxyvinylglycine: a kinetic and X-ray
study. Biochemist 36:12633–12643
Colinas M, Esenhut M, Tohge T, Pesquera M, Fernie AR, Weber APM, Fiztpatrick TB (2016)
Balancing of B6 vitaminers is essential for plant development and metabolism in Arabidopsis.
Plant Cell 28:439–453
Cornell NW, Zuurendonk PF, Kerich MJ, Straight CB (1984) Selective inhibition of alanine
aminotransferase and aspartate aminotransferase in rat hepatocytes. Biochem J 220:707–716
Coruzzi GM (2003) Primary N-assimilation into amino acids in Arabidopsis. In: Somerville CR,
Meyerowitz EM (eds) The Arabidopsis book. American Society of Plant Biologists, Rockville,
pp 1–17
Coruzzi GM, Last RL (2000) Amino acids. In: Buchanan RB, Gruissem W, Jones R (eds)
Biochemistry and molecular biology of plants. American Society of Plant Physiologists,
Rockville, pp 358–410
From Aspartate to Ethylene: Central Role of N, C, and S Shuttles by. . .
283
