Modulation of mir-33 and mir-122 by dietary polyphenols

mi(cro)RNAs are becoming relevant for the epigenetic control of metabolism. miRNAs are small non-conding RNAs of approximately 19-24 nucleotides in length that regulate the expression of target genes at post-transcriptional level. Specifically, miR-33 is a critical regulator of cholesterol and fatty...

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Detalles Bibliográficos
Autor: Baselga Escudero, Laura
Tipo de recurso: tesis doctoral
Estado:Versión publicada
Fecha de publicación:2013
País:España
Institución:Universitat Rovira i virgili (URV)
Repositorio:Repositori Institucional de la Universitat Rovira i Virgili
OAI Identifier:oai:urv.cat:TDX:1257
Acceso en línea:https://hdl.handle.net/20.500.11797/TDX1257
http://hdl.handle.net/10803/126446
Access Level:acceso abierto
Palabra clave:663/664 - Aliments i nutrició. Enologia. Olis. Greixos
577 - Bioquímica. Biologia molecular. Biofísica
Descripción
Sumario:mi(cro)RNAs are becoming relevant for the epigenetic control of metabolism. miRNAs are small non-conding RNAs of approximately 19-24 nucleotides in length that regulate the expression of target genes at post-transcriptional level. Specifically, miR-33 is a critical regulator of cholesterol and fatty acid homeostasis by repressesing fatty acid oxidation, hepatic HDL biogenesis and cholesterol efflux to HDL. Furthermore, miR-122, which is liver-specific, regulates several genes that control fatty acid and triglyceride biosynthesis. On the other hand, dietary components, such polyphenols, are reported to have benefitial effects againts cardiovascular diseases, reducing triglycerides and/or cholesterol plasma levels. Hence, the main objective of this thesis was to evaluate the capacity of polyphenols, mainly proanthocyanidins, to modulate miR-33 and miR-122 in different physiological situations. Result showed that polyphenols modulate these miRNAs and their target genes in liver, suggesting that miRNAs regulation are a new molecular mechanims used by some polyphenols to modulate lipid metabolism and to improve the atherogenic profile. Moreover, NMR studies showed that polyphenols directly bind to miR-33 and miR-122, suggesting that polyphenols can modulate cell miRNAs levels by a direct interaction.