Literature DB >> 18266760

Exploring CP12 binding proteins revealed aldolase as a new partner for the phosphoribulokinase/glyceraldehyde 3-phosphate dehydrogenase/CP12 complex--purification and kinetic characterization of this enzyme from Chlamydomonas reinhardtii.

Jenny Erales1, Luisana Avilan, Sandrine Lebreton, Brigitte Gontero.   

Abstract

Possible binding proteins of CP12 in a green alga, Chlamydomonas reinhardtii, were investigated. We covalently immobilized CP12 on a resin and then used it to trap CP12 partners. Thus, we found an association between CP12 and phosphoribulokinase (EC 2.7.1.19), glyceraldehyde 3-phosphate dehydrogenase (EC 1.2.1.13) and aldolase. Immunoprecipitation with purified CP12 antibodies supported these data. The dissociation constant between CP12 and fructose 1,6-bisphosphate (EC 4.1.2.13) aldolase was measured by surface plasmon resonance and is equal to 0.48 +/- 0.05 mum and thus corroborated an interaction between CP12 and aldolase. However, the association is even stronger between aldolase and the phosphoribulokinase/glyceraldehyde 3-phosphate dehydrogenase/CP12 complex and the dissociation constant between them is equal to 55+/-5 nm. Moreover, owing to the fact that aldolase has been poorly studied in C. reinhardtii, we purified it and analyzed its kinetic properties. The enzyme displayed Michaelis-Menten kinetics with fructose 1,6-bisphosphate and sedoheptulose 1,7-bisphosphate, with a catalytic constant equal to 35 +/- 1 s(-1) and 4 +/- 0.1 s(-1), respectively. The K(m) value for fructose 1,6-bisphosphate was equal to 0.16 +/- 0.02 mm and 0.046 +/- 0.005 mm for sedoheptulose 1,7-bisphosphate. The catalytic efficiency of aldolase was thus 219 +/- 31 s(-1).mm(-1) with fructose 1,6-bisphosphate and 87 +/- 9 s(-1).mm(-1) with sedoheptulose 1,7-bisphosphate. In the presence of the complex, this parameter for fructose 1,6-bisphosphate increased to 310 +/- 23 s(-1).mm(-1), whereas no change was observed with sedoheptulose 1,7-bisphosphate. The condensation reaction of aldolase to form fructose 1,6-bisphosphate was also investigated but no effect of CP12 or the complex on this reaction was observed.

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Year:  2008        PMID: 18266760     DOI: 10.1111/j.1742-4658.2008.06284.x

Source DB:  PubMed          Journal:  FEBS J        ISSN: 1742-464X            Impact factor:   5.542


  15 in total

1.  Rational design, synthesis, and evaluation of new selective inhibitors of microbial class II (zinc dependent) fructose bis-phosphate aldolases.

Authors:  Racha Daher; Mathieu Coinçon; Matthieu Fonvielle; Petra M Gest; Marcelo E Guerin; Mary Jackson; Jurgen Sygusch; Michel Therisod
Journal:  J Med Chem       Date:  2010-11-11       Impact factor: 7.446

2.  Antisense suppression of the small chloroplast protein CP12 in tobacco: a transcriptional viewpoint.

Authors:  Thomas P Howard; Graham J G Upton; Julie C Lloyd; Christine A Raines
Journal:  Plant Signal Behav       Date:  2011-12

3.  Antisense suppression of the small chloroplast protein CP12 in tobacco alters carbon partitioning and severely restricts growth.

Authors:  Thomas P Howard; Michael J Fryer; Prashant Singh; Metodi Metodiev; Anna Lytovchenko; Toshihiro Obata; Alisdair R Fernie; Nicholas J Kruger; W Paul Quick; Julie C Lloyd; Christine A Raines
Journal:  Plant Physiol       Date:  2011-08-24       Impact factor: 8.340

4.  Comparative sequence analysis of CP12, a small protein involved in the formation of a Calvin cycle complex in photosynthetic organisms.

Authors:  René Groben; Dimitrios Kaloudas; Christine A Raines; Bernard Offmann; Stephen C Maberly; Brigitte Gontero
Journal:  Photosynth Res       Date:  2010-03-12       Impact factor: 3.573

5.  Characterization of chloroplastic fructose 1,6-bisphosphate aldolases as lysine-methylated proteins in plants.

Authors:  Morgane Mininno; Sabine Brugière; Virginie Pautre; Annabelle Gilgen; Sheng Ma; Myriam Ferro; Marianne Tardif; Claude Alban; Stéphane Ravanel
Journal:  J Biol Chem       Date:  2012-04-30       Impact factor: 5.157

6.  CP12 from Chlamydomonas reinhardtii, a permanent specific "chaperone-like" protein of glyceraldehyde-3-phosphate dehydrogenase.

Authors:  Jenny Erales; Sabrina Lignon; Brigitte Gontero
Journal:  J Biol Chem       Date:  2009-03-14       Impact factor: 5.157

7.  Comparative analysis of 126 cyanobacterial genomes reveals evidence of functional diversity among homologs of the redox-regulated CP12 protein.

Authors:  Desirée N Stanley; Christine A Raines; Cheryl A Kerfeld
Journal:  Plant Physiol       Date:  2012-11-26       Impact factor: 8.340

8.  Immunoelectron microscopy for locating calvin cycle enzymes in the thylakoids of synechocystis 6803.

Authors:  Rachna Agarwal; Stefan Ortleb; Jayashree Krishna Sainis; Michael Melzer
Journal:  Mol Plant       Date:  2008-11-28       Impact factor: 13.164

9.  ppGpp influences protein protection, growth and photosynthesis in Phaeodactylum tricornutum.

Authors:  Luisana Avilan; Regine Lebrun; Carine Puppo; Sylvie Citerne; Stephane Cuiné; Yonghua Li-Beisson; Benoît Menand; Ben Field; Brigitte Gontero
Journal:  New Phytol       Date:  2021-03-19       Impact factor: 10.151

10.  Expression analysis of the Arabidopsis CP12 gene family suggests novel roles for these proteins in roots and floral tissues.

Authors:  Prashant Singh; Dimitrios Kaloudas; Christine A Raines
Journal:  J Exp Bot       Date:  2008-10-28       Impact factor: 6.992

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