scholarly article | Q13442814 |
P356 | DOI | 10.1002/HEP.30507 |
P698 | PubMed publication ID | 30653687 |
P50 | author | Hua Qu | Q51301958 |
Hongting Zheng | Q56479724 | ||
Gangyi Yang | Q56959326 | ||
P2093 | author name string | Jing Xu | |
Yi Zheng | |||
Zheng Sun | |||
Linlin Zhang | |||
Qin Ouyang | |||
Yuren Wang | |||
Xin Xiong | |||
Zhiming Zhu | |||
Qian Liao | |||
Xiaoyu Liao | |||
Xiufei Liu | |||
P2860 | cites work | Metformin suppresses gluconeogenesis by inhibiting mitochondrial glycerophosphate dehydrogenase | Q22251079 |
Proapoptotic BAX and BAK modulate the unfolded protein response by a direct interaction with IRE1alpha | Q24322072 | ||
Novel adeno-associated viruses from rhesus monkeys as vectors for human gene therapy | Q24535690 | ||
Loss of cyclophilin D reveals a critical role for mitochondrial permeability transition in cell death | Q28242653 | ||
Role of glycerol-3-phosphate dehydrogenase 2 in mouse sperm capacitation | Q28287012 | ||
Regulation of hepatic lipogenesis by the transcription factor XBP1 | Q28507784 | ||
Inflammasome-mediated dysbiosis regulates progression of NAFLD and obesity | Q28512778 | ||
The unfolded protein response: from stress pathway to homeostatic regulation | Q29547396 | ||
The natural history of nonalcoholic fatty liver disease: a population-based cohort study | Q29617161 | ||
Sources of fatty acids stored in liver and secreted via lipoproteins in patients with nonalcoholic fatty liver disease | Q29619334 | ||
Mechanisms for insulin resistance: common threads and missing links | Q29620447 | ||
Constitutive role for IRE1α-XBP1 signaling pathway in the insulin-mediated hepatic lipogenic program | Q30426645 | ||
Hepatic p63 regulates steatosis via IKKβ/ER stress | Q33654494 | ||
Targeting cyclophilin D and the mitochondrial permeability transition enhances beta-cell survival and prevents diabetes in Pdx1 deficiency | Q33933229 | ||
Time-course of hormonal induction of mitochondrial glycerophosphate dehydrogenase biogenesis in rat liver. | Q33988842 | ||
High efficiency of ROS production by glycerophosphate dehydrogenase in mammalian mitochondria. | Q34014350 | ||
Fibroblast growth factor 21 is regulated by the IRE1α-XBP1 branch of the unfolded protein response and counteracts endoplasmic reticulum stress-induced hepatic steatosis | Q34396839 | ||
HAX-1 regulates cyclophilin-D levels and mitochondria permeability transition pore in the heart | Q36332075 | ||
A refined analysis of superoxide production by mitochondrial sn-glycerol 3-phosphate dehydrogenase. | Q36466769 | ||
Review: The role of insulin resistance in nonalcoholic fatty liver disease | Q36591903 | ||
Hepatic Transmembrane 6 Superfamily Member 2 Regulates Cholesterol Metabolism in Mice | Q36828380 | ||
The function and the role of the mitochondrial glycerol-3-phosphate dehydrogenase in mammalian tissues | Q38065670 | ||
Progression of NAFLD to diabetes mellitus, cardiovascular disease or cirrhosis | Q38090905 | ||
Physiologic functions of cyclophilin D and the mitochondrial permeability transition pore. | Q38094017 | ||
The genetics of NAFLD. | Q38141714 | ||
How does protein misfolding in the endoplasmic reticulum affect lipid metabolism in the liver? | Q38190781 | ||
Regulation of adenine nucleotide translocase and glycerol 3-phosphate dehydrogenase expression by thyroid hormones in different rat tissues | Q38354748 | ||
Genetic Factors That Affect Risk of Alcoholic and Nonalcoholic Fatty Liver Disease | Q38731798 | ||
TGF-β: the master regulator of fibrosis | Q38816052 | ||
Enjoy the Trip: Calcium in Mitochondria Back and Forth | Q38825617 | ||
Endoplasmic reticulum proteostasis in hepatic steatosis. | Q38925531 | ||
Vitamin B6 and Cancer Risk: A Field Synopsis and Meta-Analysis | Q39219615 | ||
Inhibition of microRNA-24 expression in liver prevents hepatic lipid accumulation and hyperlipidemia | Q39568148 | ||
The unfolded protein response transducer IRE1α prevents ER stress-induced hepatic steatosis | Q41904044 | ||
Adiposity amplifies the genetic risk of fatty liver disease conferred by multiple loci | Q42347122 | ||
Evidence for a compensated thermogenic defect in transgenic mice lacking the mitochondrial glycerol-3-phosphate dehydrogenase gene | Q44576145 | ||
Mitochondrial remodeling in the liver following chronic alcohol feeding to rats | Q46189389 | ||
High expression of thyroid hormone receptors and mitochondrial glycerol-3-phosphate dehydrogenase in the liver is linked to enhanced fatty acid oxidation in Lou/C, a rat strain resistant to obesity | Q46218766 | ||
Mitochondrial dysfunction, through impaired autophagy, leads to endoplasmic reticulum stress, deregulated lipid metabolism, and pancreatitis in animal models. | Q46289111 | ||
Protein arginine methyl transferase 1- and Jumonji C domain-containing protein 6-dependent arginine methylation regulate hepatocyte nuclear factor 4 alpha expression and hepatocyte proliferation in mice | Q47662787 | ||
Cyclophilin D Deficiency Attenuates Mitochondrial Perturbation and Ameliorates Hepatic Steatosis. | Q49884136 | ||
Circadian- and UPR-dependent control of CPEB4 mediates a translational response to counteract hepatic steatosis under ER stress. | Q51188275 | ||
Metformin targets Mitochondrial Glycerophosphate Dehydrogenase (mGPDH) to control Rate of Oxidative Phosphorylation and growth of thyroid cancer in vitro and in vivo. | Q52565556 | ||
Mitochondrial glycerol 3-phosphate dehydrogenase promotes skeletal muscle regeneration | Q58616125 | ||
Role of NADH shuttle system in glucose-induced activation of mitochondrial metabolism and insulin secretion | Q78111807 | ||
Mitochondrial Dysfunction and Signaling in Chronic Liver Diseases | Q90250403 | ||
P433 | issue | 1 | |
P921 | main subject | steatosis | Q1365091 |
P304 | page(s) | 84-97 | |
P577 | publication date | 2019-03-15 | |
P1433 | published in | Hepatology | Q15724398 |
P1476 | title | Deficiency of Mitochondrial Glycerol 3-Phosphate Dehydrogenase Contributes to Hepatic Steatosis | |
P478 | volume | 70 |
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