A critical tyrosine residue determines the uncoupling protein-like activity of the yeast mitochondrial oxaloacetate carrier


Por: Luévano-MARTÍNEZ L.A., Barba-Ostria C., Araiza-Olivera D., Chiquete-Félix N., Guerrero-Castillo S., Rial E., Georgellis D., Uribe-Carvajal S.

Publicada: 1 abr 2012
Resumen:
The mitochondrial Oac (oxaloacetate carrier) found in sonic fungi and plants catalyses the uptake of oxaloacetate, malonate and sulfate. Despite their sequence similarity, transport specificity varies considerably between Oacs. Indeed, whereas ScOac (Saccharomyces cerevisiae Oac) is a specific anion-proton symporter, the YlOac (Yarrowia lipolytica Oac) has the added ability to transport protons, behaving as a UCP (uncoupling protein). Significantly, we identified two amino acid changes at the matrix gate of YlOac and ScOac, tyrosine to phenylalanine and methionine to leucine. We studied the role of these amino acids by expressing both wild-type and specifically mutated Oacs in an Oac-null S. cerevisiae strain. No phenotype could be associated with the methionine to leucine substitution, whereas UCP-like activity was dependent on the presence of the tyrosine residue normally expressed in the Mac, i.e. Tyr-ScOac mediated proton transport, whereas Phe-YlOac lost its protonophoric activity

Filiaciones:
Univ Nacl Autonoma Mexico, Inst Fisiol Celular, Dept Mol Genet, Mexico City, DF, Mexico
Centro de Investigaciones Biológicas, CSIC, Ramiro de Maeztu 9, 28040, Madrid, Spain
ISSN: 02646021
Editorial
PORTLAND PRESS LTD, THIRD FLOOR, EAGLE HOUSE, 16 PROCTER STREET, LONDON WC1V 6 NX, ENGLAND, Reino Unido
Tipo de documento: Article
Volumen: 443 Número: 1
Páginas: 317-325
WOS Id: 000302590500034
ID de PubMed: 22236206

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