INVESTIGADORES
FOX Ana Romina
artículos
Título:
Understanding the function of bacterial and eukaryotic thiolases II by integrating evolutionary and functional approaches.
Autor/es:
ANA R FOX; GABRIELA SOTO; MOZZICAFREDDO MATTEO; GARCÍA ARACELI; CUCCIOLONI, MASSIMILIANO; ANGELETTI, MAURO; SALERNO JUAN CARLOS; AYUB, NICOLÁS DANIEL
Revista:
GENE
Editorial:
ELSEVIER SCIENCE BV
Referencias:
Lugar: Amsterdam; Año: 2014 vol. 533 p. 5 - 10
ISSN:
0378-1119
Resumen:
Acetoacetyl-CoA thiolase (EC 2.3.1.9), commonly named thiolase II, condenses two molecules of acetyl-CoA to give acetoacetyl-CoA and CoA. This enzyme acts in anabolic processes as the first step in the biosynthesis of isoprenoids and polyhydroxybutyrate in eukaryotes and bacteria, respectively. We have recently reported the evolutionary and functional equivalence of these enzymes, suggesting that thiolase II could be the rate limiting enzyme in these pathways and presented evidence indicating that this enzyme modulates the availability of reducing equivalents during abiotic stress adaptation in bacteria and plants. However, these results are not sufficient to clarify why thiolase II was evolutionary selected as a critical enzyme in the production of antioxidant compounds. Regarding this intriguing topic, we propose that thiolase II could sense changes in the acetyl-CoA/CoA ratio induced by the inhibition of the tricarboxylic acid cycle under abiotic stress. Thus, the high level of evolutionary and functional constraint of thiolase II may be due to the connection of this enzyme with an ancient and conserved metabolic route.