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FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|June 14, 2006
Methionine restriction decreases mitochondrial oxygen radical generation and leak as well as oxidative damage to mitochondrial DNA and proteinsAlberto Sanz, Pilar Caro, Victoria Ayala, et al.Evolution; International Journal of Organic Evolution|August 22, 2015
Long lifespans have evolved with long and monounsaturated fatty acids in birdsIsmael Galván, Alba Naudí, Johannes Erritzøe, et al.Biogerontology|May 9, 2007
Effect of 8.5% and 25% caloric restriction on mitochondrial free radical production and oxidative stress in rat liverJosé Gómez, Pilar Caro, Alba Naudí, et al.Biology|December 23, 2022
Methionine Metabolism Is Down-Regulated in Heart of Long-Lived MammalsNatalia Mota-Martorell, Mariona Jové, Rebeca Berdún, et al.The Journals of Gerontology. Series A, Biological Sciences and Medical Sciences|April 25, 2007
Dietary protein restriction decreases oxidative protein damage, peroxidizability index, and mitochondrial complex I content in rat liverVictoria Ayala, Alba Naudí, Alberto Sanz, et al.Free Radical Biology & Medicine|September 25, 2023
Phenotypic molecular features of long-lived animal speciesMariona Jové, Natàlia Mota-Martorell, Anna Fernàndez-Bernal, et al.Mechanisms of Ageing and Development|June 16, 2005
Protein methionine content and MDA-lysine adducts are inversely related to maximum life span in the heart of mammalsMaria Cristina Ruiz, Victoria Ayala, Manel Portero-Otín, et al.Journal of Bioenergetics and Biomembranes|July 13, 2011
Methionine and homocysteine modulate the rate of ROS generation of isolated mitochondria in vitroJose Gomez, Ines Sanchez-Roman, Alexia Gomez, et al.Rejuvenation Research|January 1, 2010
Forty percent methionine restriction decreases mitochondrial oxygen radical production and leak at complex I during forward electron flow and lowers oxidative damage to proteins and mitochondrial DNA in rat kidney and brain mitochondriaPilar Caro, Jose Gomez, Ines Sanchez, et al.Redox Biology|May 1, 2020
Low abundance of NDUFV2 and NDUFS4 subunits of the hydrophilic complex I domain and VDAC1 predicts mammalian longevityNatalia Mota-Martorell, Mariona Jove, Irene Pradas, et al.Pageof 7