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Catherine F Clarke

Showing results (61-70 of 77) with videos related to

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Free Radical Biology & Medicine|January 13, 2015
Isotope-reinforced polyunsaturated fatty acids protect mitochondria from oxidative stressAlexander Y Andreyev, Hui S Tsui, Ginger L Milne, et al.
Journal of the American Society of Nephrology : JASN|February 10, 2019
Treatment with 2,4-Dihydroxybenzoic Acid Prevents FSGS Progression and Renal Fibrosis in Podocyte-Specific <i>Coq6</i> Knockout MiceEugen Widmeier, Merlin Airik, Hannah Hugo, et al.
Biochimica Et Biophysica Acta. Molecular and Cell Biology of Lipids|May 24, 2019
Recombinant RquA catalyzes the in vivo conversion of ubiquinone to rhodoquinone in Escherichia coli and Saccharomyces cerevisiaeAnn C Bernert, Evan J Jacobs, Samantha R Reinl, et al.
The Journal of Biological Chemistry|October 9, 2021
A dedicated flavin-dependent monooxygenase catalyzes the hydroxylation of demethoxyubiquinone into ubiquinone (coenzyme Q) in ArabidopsisScott Latimer, Shea A Keene, Lauren R Stutts, et al.
Free Radical Biology & Medicine|June 19, 2012
Small amounts of isotope-reinforced polyunsaturated fatty acids suppress lipid autoxidationShauna Hill, Connor R Lamberson, Libin Xu, et al.
Free Radical Biology & Medicine|June 13, 2017
Kaempferol increases levels of coenzyme Q in kidney cells and serves as a biosynthetic ring precursorLucía Fernández-Del-Río, Anish Nag, Elena Gutiérrez Casado, et al.
EMBO Molecular Medicine|May 14, 2011
Probucol ameliorates renal and metabolic sequelae of primary CoQ deficiency in Pdss2 mutant miceMarni J Falk, Erzsebet Polyak, Zhe Zhang, et al.
Journal of Bacteriology|November 26, 2009
Evidence that ubiquinone is a required intermediate for rhodoquinone biosynthesis in Rhodospirillum rubrumBrian C Brajcich, Andrew L Iarocci, Lindsey A G Johnstone, et al.
The Journal of Biological Chemistry|August 25, 2011
Caenorhabditis elegans UCP4 protein controls complex II-mediated oxidative phosphorylation through succinate transportMatthew Pfeiffer, Ernst-Bernhard Kayzer, Xianmei Yang, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 10, 2009
Target identification using drug affinity responsive target stability (DARTS)Brett Lomenick, Rui Hao, Nao Jonai, et al.
Pageof 8

Showing results (61-70 of 77) with videos related to

Sort By:
Pageof 8
Free Radical Biology & Medicine|January 13, 2015
Isotope-reinforced polyunsaturated fatty acids protect mitochondria from oxidative stressAlexander Y Andreyev, Hui S Tsui, Ginger L Milne, et al.
Journal of the American Society of Nephrology : JASN|February 10, 2019
Treatment with 2,4-Dihydroxybenzoic Acid Prevents FSGS Progression and Renal Fibrosis in Podocyte-Specific <i>Coq6</i> Knockout MiceEugen Widmeier, Merlin Airik, Hannah Hugo, et al.
Biochimica Et Biophysica Acta. Molecular and Cell Biology of Lipids|May 24, 2019
Recombinant RquA catalyzes the in vivo conversion of ubiquinone to rhodoquinone in Escherichia coli and Saccharomyces cerevisiaeAnn C Bernert, Evan J Jacobs, Samantha R Reinl, et al.
The Journal of Biological Chemistry|October 9, 2021
A dedicated flavin-dependent monooxygenase catalyzes the hydroxylation of demethoxyubiquinone into ubiquinone (coenzyme Q) in ArabidopsisScott Latimer, Shea A Keene, Lauren R Stutts, et al.
Free Radical Biology & Medicine|June 19, 2012
Small amounts of isotope-reinforced polyunsaturated fatty acids suppress lipid autoxidationShauna Hill, Connor R Lamberson, Libin Xu, et al.
Free Radical Biology & Medicine|June 13, 2017
Kaempferol increases levels of coenzyme Q in kidney cells and serves as a biosynthetic ring precursorLucía Fernández-Del-Río, Anish Nag, Elena Gutiérrez Casado, et al.
EMBO Molecular Medicine|May 14, 2011
Probucol ameliorates renal and metabolic sequelae of primary CoQ deficiency in Pdss2 mutant miceMarni J Falk, Erzsebet Polyak, Zhe Zhang, et al.
Journal of Bacteriology|November 26, 2009
Evidence that ubiquinone is a required intermediate for rhodoquinone biosynthesis in Rhodospirillum rubrumBrian C Brajcich, Andrew L Iarocci, Lindsey A G Johnstone, et al.
The Journal of Biological Chemistry|August 25, 2011
Caenorhabditis elegans UCP4 protein controls complex II-mediated oxidative phosphorylation through succinate transportMatthew Pfeiffer, Ernst-Bernhard Kayzer, Xianmei Yang, et al.
Proceedings of the National Academy of Sciences of the United States of America|December 10, 2009
Target identification using drug affinity responsive target stability (DARTS)Brett Lomenick, Rui Hao, Nao Jonai, et al.
Pageof 8