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Subhash D Katewa

Showing results (11-20 of 25) with videos related to

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Journal of Molecular Evolution|March 6, 2008
A candidate complex approach to study functional mitochondrial DNA changes: sequence variation and quaternary structure modeling of Drosophila simulans cytochrome c oxidaseRichard G Melvin, Subhash D Katewa, J William O Ballard
Indian Journal of Experimental Biology|July 23, 2004
Studies on kinetic properties of acid phosphatase from nuclei-free rat liver homogenate using different substratesJignesh D Pandya, Bhavesh D Patel, Subhash D Katewa, et al.
Annals of the New York Academy of Sciences|October 16, 2007
Comparative analysis of mitochondrial genotype and agingJ William O Ballard, Subhash D Katewa, Richard G Melvin, et al.
Evolution; International Journal of Organic Evolution|June 30, 2007
Mitochondrial DNA variation is associated with measurable differences in life-history traits and mitochondrial metabolism in Drosophila simulansJ William O Ballard, Richard G Melvin, Subhash D Katewa, et al.
American Journal of Physiology. Endocrinology and Metabolism|May 25, 2006
Maternal high-fat diet consumption results in fetal malprogramming predisposing to the onset of metabolic syndrome-like phenotype in adulthoodMalathi Srinivasan, Subhash D Katewa, Arivazhagan Palaniyappan, et al.
Aging Cell|August 30, 2007
Sex differences in survival and mitochondrial bioenergetics during aging in DrosophilaJ William O Ballard, Richard G Melvin, Joseph T Miller, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 5, 2014
Control of metabolic adaptation to fasting by dILP6-induced insulin signaling in Drosophila oenocytesDebamita Chatterjee, Subhash D Katewa, Yanyan Qi, et al.
Cell Metabolism|July 10, 2012
Intramyocellular fatty-acid metabolism plays a critical role in mediating responses to dietary restriction in Drosophila melanogasterSubhash D Katewa, Fabio Demontis, Marysia Kolipinski, et al.
Cell Metabolism|June 4, 2010
With TOR, less is more: a key role for the conserved nutrient-sensing TOR pathway in agingPankaj Kapahi, Di Chen, Aric N Rogers, et al.
Cell Reports|October 27, 2016
Intestinal IRE1 Is Required for Increased Triglyceride Metabolism and Longer Lifespan under Dietary RestrictionNuno Miguel Luis, Lifen Wang, Mauricio Ortega, et al.
Pageof 3

Showing results (11-20 of 25) with videos related to

Sort By:
Pageof 3
Journal of Molecular Evolution|March 6, 2008
A candidate complex approach to study functional mitochondrial DNA changes: sequence variation and quaternary structure modeling of Drosophila simulans cytochrome c oxidaseRichard G Melvin, Subhash D Katewa, J William O Ballard
Indian Journal of Experimental Biology|July 23, 2004
Studies on kinetic properties of acid phosphatase from nuclei-free rat liver homogenate using different substratesJignesh D Pandya, Bhavesh D Patel, Subhash D Katewa, et al.
Annals of the New York Academy of Sciences|October 16, 2007
Comparative analysis of mitochondrial genotype and agingJ William O Ballard, Subhash D Katewa, Richard G Melvin, et al.
Evolution; International Journal of Organic Evolution|June 30, 2007
Mitochondrial DNA variation is associated with measurable differences in life-history traits and mitochondrial metabolism in Drosophila simulansJ William O Ballard, Richard G Melvin, Subhash D Katewa, et al.
American Journal of Physiology. Endocrinology and Metabolism|May 25, 2006
Maternal high-fat diet consumption results in fetal malprogramming predisposing to the onset of metabolic syndrome-like phenotype in adulthoodMalathi Srinivasan, Subhash D Katewa, Arivazhagan Palaniyappan, et al.
Aging Cell|August 30, 2007
Sex differences in survival and mitochondrial bioenergetics during aging in DrosophilaJ William O Ballard, Richard G Melvin, Joseph T Miller, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 5, 2014
Control of metabolic adaptation to fasting by dILP6-induced insulin signaling in Drosophila oenocytesDebamita Chatterjee, Subhash D Katewa, Yanyan Qi, et al.
Cell Metabolism|July 10, 2012
Intramyocellular fatty-acid metabolism plays a critical role in mediating responses to dietary restriction in Drosophila melanogasterSubhash D Katewa, Fabio Demontis, Marysia Kolipinski, et al.
Cell Metabolism|June 4, 2010
With TOR, less is more: a key role for the conserved nutrient-sensing TOR pathway in agingPankaj Kapahi, Di Chen, Aric N Rogers, et al.
Cell Reports|October 27, 2016
Intestinal IRE1 Is Required for Increased Triglyceride Metabolism and Longer Lifespan under Dietary RestrictionNuno Miguel Luis, Lifen Wang, Mauricio Ortega, et al.
Pageof 3