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David Carling

Showing results (111-120 of 132) with videos related to

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Cell Metabolism|October 25, 2011
ADP regulates SNF1, the Saccharomyces cerevisiae homolog of AMP-activated protein kinaseFaith V Mayer, Richard Heath, Elizabeth Underwood, et al.
The Journal of Biological Chemistry|October 2, 2007
Low utilization of circulating glucose after food withdrawal in Snell dwarf miceNatasha L Brooks, Chad M Trent, Carl F Raetzsch, et al.
British Journal of Cancer|April 19, 2023
The CDK7 inhibitor CT7001 (Samuraciclib) targets proliferation pathways to inhibit advanced prostate cancerTheodora A Constantin, Anabel Varela-Carver, Kyle K Greenland, et al.
Molecular Metabolism|September 5, 2024
Dietary protein defends lean mass and maintains the metabolic benefits of glucagon receptor agonism in miceTatiana Lopes, David Cd Hope, Jose M Ramos-Pittol, et al.
Neuron|January 17, 2007
Phospho-dependent functional modulation of GABA(B) receptors by the metabolic sensor AMP-dependent protein kinaseNobuyuki Kuramoto, Megan E Wilkins, Benjamin P Fairfax, et al.
Cell Reports|April 16, 2023
AMPK activation protects against prostate cancer by inducing a catabolic cellular stateLucy Penfold, Angela Woods, Alice E Pollard, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 16, 2016
Mutation of Fnip1 is associated with B-cell deficiency, cardiomyopathy, and elevated AMPK activityOwen M Siggs, Alexander Stockenhuber, Mukta Deobagkar-Lele, et al.
The Journal of Clinical Investigation|January 4, 2003
The AMP-activated protein kinase alpha2 catalytic subunit controls whole-body insulin sensitivityBenoit Viollet, Fabrizio Andreelli, Sebastian B Jørgensen, et al.
The Journal of Clinical Investigation|August 3, 2007
AMPK is essential for energy homeostasis regulation and glucose sensing by POMC and AgRP neuronsMarc Claret, Mark A Smith, Rachel L Batterham, et al.
Nature Metabolism|July 13, 2021
Cell competition acts as a purifying selection to eliminate cells with mitochondrial defects during early mouse developmentAna Lima, Gabriele Lubatti, Jörg Burgstaller, et al.
Pageof 14

Showing results (111-120 of 132) with videos related to

Sort By:
Pageof 14
Cell Metabolism|October 25, 2011
ADP regulates SNF1, the Saccharomyces cerevisiae homolog of AMP-activated protein kinaseFaith V Mayer, Richard Heath, Elizabeth Underwood, et al.
The Journal of Biological Chemistry|October 2, 2007
Low utilization of circulating glucose after food withdrawal in Snell dwarf miceNatasha L Brooks, Chad M Trent, Carl F Raetzsch, et al.
British Journal of Cancer|April 19, 2023
The CDK7 inhibitor CT7001 (Samuraciclib) targets proliferation pathways to inhibit advanced prostate cancerTheodora A Constantin, Anabel Varela-Carver, Kyle K Greenland, et al.
Molecular Metabolism|September 5, 2024
Dietary protein defends lean mass and maintains the metabolic benefits of glucagon receptor agonism in miceTatiana Lopes, David Cd Hope, Jose M Ramos-Pittol, et al.
Neuron|January 17, 2007
Phospho-dependent functional modulation of GABA(B) receptors by the metabolic sensor AMP-dependent protein kinaseNobuyuki Kuramoto, Megan E Wilkins, Benjamin P Fairfax, et al.
Cell Reports|April 16, 2023
AMPK activation protects against prostate cancer by inducing a catabolic cellular stateLucy Penfold, Angela Woods, Alice E Pollard, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 16, 2016
Mutation of Fnip1 is associated with B-cell deficiency, cardiomyopathy, and elevated AMPK activityOwen M Siggs, Alexander Stockenhuber, Mukta Deobagkar-Lele, et al.
The Journal of Clinical Investigation|January 4, 2003
The AMP-activated protein kinase alpha2 catalytic subunit controls whole-body insulin sensitivityBenoit Viollet, Fabrizio Andreelli, Sebastian B Jørgensen, et al.
The Journal of Clinical Investigation|August 3, 2007
AMPK is essential for energy homeostasis regulation and glucose sensing by POMC and AgRP neuronsMarc Claret, Mark A Smith, Rachel L Batterham, et al.
Nature Metabolism|July 13, 2021
Cell competition acts as a purifying selection to eliminate cells with mitochondrial defects during early mouse developmentAna Lima, Gabriele Lubatti, Jörg Burgstaller, et al.
Pageof 14