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Muntaha Samad

Showing results (11-20 of 19) with videos related to

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Cellular and Molecular Life Sciences : CMLS|January 6, 2023
Brain histone beta-hydroxybutyrylation couples metabolism with gene expressionSara Cornuti, Siwei Chen, Leonardo Lupori, et al.
EMBO Reports|October 7, 2020
MiR-29 coordinates age-dependent plasticity brakes in the adult visual cortexDebora Napoli, Leonardo Lupori, Raffaele Mazziotti, et al.
Cell|June 1, 2019
Defining the Independence of the Liver Circadian ClockKevin B Koronowski, Kenichiro Kinouchi, Patrick-Simon Welz, et al.
Cell Reports|March 19, 2020
FKBP10 Regulates Protein Translation to Sustain Lung Cancer GrowthGiorgio Ramadori, Rafael M Ioris, Zoltan Villanyi, et al.
Molecular Metabolism|August 1, 2022
Tryptophan metabolism is a physiological integrator regulating circadian rhythmsPaul Petrus, Marlene Cervantes, Muntaha Samad, et al.
Science Advances|December 17, 2020
S-adenosyl-l-homocysteine hydrolase links methionine metabolism to the circadian clock and chromatin remodelingCarolina Magdalen Greco, Marlene Cervantes, Jean-Michel Fustin, et al.
Cell Metabolism|January 14, 2022
Atlas of exercise metabolism reveals time-dependent signatures of metabolic homeostasisShogo Sato, Kenneth A Dyar, Jonas T Treebak, et al.
Cell Reports|June 2, 2023
Liver and muscle circadian clocks cooperate to support glucose tolerance in miceJacob G Smith, Kevin B Koronowski, Thomas Mortimer, et al.
Science Advances|September 22, 2021
Integration of feeding behavior by the liver circadian clock reveals network dependency of metabolic rhythmsCarolina M Greco, Kevin B Koronowski, Jacob G Smith, et al.
Pageof 2

Showing results (11-20 of 19) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 19 results.
Cellular and Molecular Life Sciences : CMLS|January 6, 2023
Brain histone beta-hydroxybutyrylation couples metabolism with gene expressionSara Cornuti, Siwei Chen, Leonardo Lupori, et al.
EMBO Reports|October 7, 2020
MiR-29 coordinates age-dependent plasticity brakes in the adult visual cortexDebora Napoli, Leonardo Lupori, Raffaele Mazziotti, et al.
Cell|June 1, 2019
Defining the Independence of the Liver Circadian ClockKevin B Koronowski, Kenichiro Kinouchi, Patrick-Simon Welz, et al.
Cell Reports|March 19, 2020
FKBP10 Regulates Protein Translation to Sustain Lung Cancer GrowthGiorgio Ramadori, Rafael M Ioris, Zoltan Villanyi, et al.
Molecular Metabolism|August 1, 2022
Tryptophan metabolism is a physiological integrator regulating circadian rhythmsPaul Petrus, Marlene Cervantes, Muntaha Samad, et al.
Science Advances|December 17, 2020
S-adenosyl-l-homocysteine hydrolase links methionine metabolism to the circadian clock and chromatin remodelingCarolina Magdalen Greco, Marlene Cervantes, Jean-Michel Fustin, et al.
Cell Metabolism|January 14, 2022
Atlas of exercise metabolism reveals time-dependent signatures of metabolic homeostasisShogo Sato, Kenneth A Dyar, Jonas T Treebak, et al.
Cell Reports|June 2, 2023
Liver and muscle circadian clocks cooperate to support glucose tolerance in miceJacob G Smith, Kevin B Koronowski, Thomas Mortimer, et al.
Science Advances|September 22, 2021
Integration of feeding behavior by the liver circadian clock reveals network dependency of metabolic rhythmsCarolina M Greco, Kevin B Koronowski, Jacob G Smith, et al.
Pageof 2