1998
DOI: 10.1104/pp.118.2.661
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Comparative Analysis of the Regulation of Expression and Structures of Two Evolutionarily Divergent Genes for Δ1-Pyrroline-5-Carboxylate Synthetase from Tomato

Abstract: We isolated two tomato (Lycopersicon esculentum) cDNA clones, tomPRO1 and tomPRO2, specifying ⌬ 1 -pyrroline-5-carboxylate synthetase (P5CS), the first enzyme of proline (Pro) biosynthesis. tomPRO1 is unusual because it resembles prokaryotic polycistronic operons (M.G. García-Ríos, T. Fujita, P.C. LaRosa, R.D. Locy, J.M. Clithero, R.A. Bressan, L.N. Csonka [1997] Proc Natl Acad Sci USA 94: 8249-8254), whereas tomPRO2 encodes a fulllength P5CS. We analyzed the accumulation of Pro and the tomPRO1 and tomPRO2 mes… Show more

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Cited by 113 publications
(86 citation statements)
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References 54 publications
(77 reference statements)
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“…This mutation in microbial GKs is novel in that different mutations in other amino acid residues required for the feedback inhibition of GK by proline were identified in bacterial genes that have been studied (11,13,23,30). A similar mutation in the tomato GK (D162N) corresponding to position 154 resulted in the removal of feedback inhibition but a drastic reduction in the specific activity (16). This is probably because the regional sequence similarity in the two GKs is very low.…”
Section: Vol 73 2007 Role Of Yeast Gk In Proline Synthesis 4013mentioning
confidence: 94%
See 1 more Smart Citation
“…This mutation in microbial GKs is novel in that different mutations in other amino acid residues required for the feedback inhibition of GK by proline were identified in bacterial genes that have been studied (11,13,23,30). A similar mutation in the tomato GK (D162N) corresponding to position 154 resulted in the removal of feedback inhibition but a drastic reduction in the specific activity (16). This is probably because the regional sequence similarity in the two GKs is very low.…”
Section: Vol 73 2007 Role Of Yeast Gk In Proline Synthesis 4013mentioning
confidence: 94%
“…Based on the prediction of the secondary structure of S. cerevisiae GK, the sequence is situated in the region between the ␤-sheet (I136 to N140) and the ␣-helix (D156 to I166), which includes a ␤-sheet-like sequence (L145 to K151), of S. cerevisiae GK. Residues 142 to 154, where most of the mutations are concentrated, are mapped to the region that was identified as important for allosteric control of the tomato GK (16). Although the sequence similarity in the regions of the two GKs is low, the regions are suggested to constitute part of the proline-binding site.…”
Section: Mutant Gks That Increase Intracellular Proline Levels Were Imentioning
confidence: 99%
“…In most plant species studied, proline accumulation during stress is the result of reciprocal action of increased biosynthesis and inhibited degradation (6). However, in tomato, dramatic elevation of free proline content during salt stress is not correlated with the expression of either of P5CS genes (7). In Medicago sativa, proline accumulation under salt stress results from the decreased expression of two PDHs rather than the increased expression of P5CS (8).…”
Section: Introductionmentioning
confidence: 95%
“…However, transport of Pro might also be essential under normal growth conditions. Pro accumulation in developing grapevine berries and maturing pollen occurs independently of changes of the key enzyme(s) of Pro biosynthesis, arguing for a different level of regulation or for import of Pro (Fujita et al, 1998;Stines et al, 1999). Additional indications for Pro transport throughout the plant come from transgenic Arabidopsis (Arabidopsis thaliana) lines with reduced Pro biosynthesis (Nanjo et al, 1999), as the morphological alterations in these lines could be rescued by exogenous Pro application.…”
mentioning
confidence: 99%