INVESTIGADORES
SALVADOR Gabriela Alejandra
congresos y reuniones científicas
Título:
Age-associated changes in the lipid composition of synaptic membrane rafts
Autor/es:
MATEOS MELINA; SALVADOR GABRIELA; GIUSTO NORMA
Lugar:
San Miguel de Tucuman
Reunión:
Congreso; . . XLV Reunión Anual de la Sociedad Argentina de Investigación en Bioquímica y Biología Molecular (SAIB),; 2009
Institución organizadora:
Sociedad Argentina de Investigación en Bioquímica y Biología Molecular (SAIB),
Resumen:
Age-associated changes in the lipid composition of synaptic membrane rafts Mateos, M.V.; Salvador, G.A and Giusto, N.M. Instituto de Investigaciones Bioquímicas de Blanca. UNS-CONICET Membrane rafts act as signal transduction platforms in many physiological processes. In this study we determined the lipid composition of cerebral cortex synaptic membrane rafts (SMR) obtained from adult (4 month old) and aged (28 month old) rats. SMR showed an enrichment in cholesterol and sphingomyelin (SM) content with respect to isolated synaptic endings (Syn). Additionally, SM content increased by 36 % in SMR obtained from aged animals with respect to adults SMR. Both SMR preparations showed an enrichment in phosphatidylcholine (PC), and a decrease in phosphatidylethanolamine and phosphatidylserine content (by 28 %, 25 % and 25% respectively) with respect to Syn. Moreover, total phospholipid-fatty acid composition from SMR presented an increase in 16:0 (35%), and a decrease in 20:4 n-6 (67%) and 22:6 n-3 (68%) content in adults. The most striking changes in fatty acid composition were mainly due to changes in PC.  A similar profile of fatty acid composition was observed in SMR obtained from aged animals. Nevertheless, the 20:4 and 22:6 content significantly decreased (80%) with respect to SMR from adults. SMR displayed a more saturated fatty acid composition than Syn and this effect was even more pronounced in aged animals. Our results suggest that more saturated membrane microdomains could be responsible of the signaling impairment observed in nervous system during aging.