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Kahealani Uehara

Showing results (1-10 of 11) with videos related to

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Comprehensive Physiology|June 26, 2023
Insulin Regulation of Hepatic Lipid HomeostasisKahealani Uehara, Dominic Santoleri, Anna E Garcia Whitlock, et al.
Oncology Letters|December 7, 2020
β-hydroxybutyrate does not alter the effects of glucose deprivation on breast cancer cellsRylee Maldonado, Chloe Adrienna Talana, Cassaundra Song, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 26, 2019
SR9009 has REV-ERB-independent effects on cell proliferation and metabolismPieterjan Dierickx, Matthew J Emmett, Chunjie Jiang, et al.
Cellular and Molecular Gastroenterology and Hepatology|March 3, 2022
Activation of Liver mTORC1 Protects Against NASH via Dual Regulation of VLDL-TAG Secretion and De Novo LipogenesisKahealani Uehara, Jaimarie Sostre-Colón, Matthew Gavin, et al.
Cell Reports|May 19, 2021
Hepatic AKT orchestrates adipose tissue thermogenesis via FGF21-dependent and -independent mechanismsJaimarie Sostre-Colón, Kahealani Uehara, Anna E Garcia Whitlock, et al.
Molecular Metabolism|January 13, 2024
Antibody blockade of activin type II receptors preserves skeletal muscle mass and enhances fat loss during GLP-1 receptor agonismElizabeth Nunn, Natasha Jaiswal, Matthew Gavin, et al.
Iscience|June 6, 2022
Global-run on sequencing identifies <i>Gm11967</i> as an Akt-dependent long noncoding RNA involved in insulin sensitivityDominic Santoleri, Hee-Woong Lim, Matthew J Emmett, et al.
Journal of Cachexia, Sarcopenia and Muscle|November 9, 2021
AKT controls protein synthesis and oxidative metabolism via combined mTORC1 and FOXO1 signalling to govern muscle physiologyNatasha Jaiswal, Matthew Gavin, Emanuele Loro, et al.
Nature|March 28, 2020
Dietary fructose feeds hepatic lipogenesis via microbiota-derived acetateSteven Zhao, Cholsoon Jang, Joyce Liu, et al.
The Journal of Clinical Investigation|December 5, 2023
ACSS2 gene variants determine kidney disease risk by controlling de novo lipogenesis in kidney tubulesDhanunjay Mukhi, Lingzhi Li, Hongbo Liu, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Comprehensive Physiology|June 26, 2023
Insulin Regulation of Hepatic Lipid HomeostasisKahealani Uehara, Dominic Santoleri, Anna E Garcia Whitlock, et al.
Oncology Letters|December 7, 2020
β-hydroxybutyrate does not alter the effects of glucose deprivation on breast cancer cellsRylee Maldonado, Chloe Adrienna Talana, Cassaundra Song, et al.
Proceedings of the National Academy of Sciences of the United States of America|May 26, 2019
SR9009 has REV-ERB-independent effects on cell proliferation and metabolismPieterjan Dierickx, Matthew J Emmett, Chunjie Jiang, et al.
Cellular and Molecular Gastroenterology and Hepatology|March 3, 2022
Activation of Liver mTORC1 Protects Against NASH via Dual Regulation of VLDL-TAG Secretion and De Novo LipogenesisKahealani Uehara, Jaimarie Sostre-Colón, Matthew Gavin, et al.
Cell Reports|May 19, 2021
Hepatic AKT orchestrates adipose tissue thermogenesis via FGF21-dependent and -independent mechanismsJaimarie Sostre-Colón, Kahealani Uehara, Anna E Garcia Whitlock, et al.
Molecular Metabolism|January 13, 2024
Antibody blockade of activin type II receptors preserves skeletal muscle mass and enhances fat loss during GLP-1 receptor agonismElizabeth Nunn, Natasha Jaiswal, Matthew Gavin, et al.
Iscience|June 6, 2022
Global-run on sequencing identifies <i>Gm11967</i> as an Akt-dependent long noncoding RNA involved in insulin sensitivityDominic Santoleri, Hee-Woong Lim, Matthew J Emmett, et al.
Journal of Cachexia, Sarcopenia and Muscle|November 9, 2021
AKT controls protein synthesis and oxidative metabolism via combined mTORC1 and FOXO1 signalling to govern muscle physiologyNatasha Jaiswal, Matthew Gavin, Emanuele Loro, et al.
Nature|March 28, 2020
Dietary fructose feeds hepatic lipogenesis via microbiota-derived acetateSteven Zhao, Cholsoon Jang, Joyce Liu, et al.
The Journal of Clinical Investigation|December 5, 2023
ACSS2 gene variants determine kidney disease risk by controlling de novo lipogenesis in kidney tubulesDhanunjay Mukhi, Lingzhi Li, Hongbo Liu, et al.
Pageof 2