The transcriptomic signature of fasting murine liver
暂无分享,去创建一个
Emiel Ver Loren van Themaat | Yuri Nikolsky | Diederik Wehkamp | Y. Nikolsky | A. V. van Kampen | M. Sokolovic | W. Lamers | L. A. Gilhuijs-Pederson | T. Hakvoort | D. D. de Waart | D. Wehkamp | Wouter H Lamers | Aleksandar Sokolović | Milka Sokolović | Dirk R de Waart | Antoine HC van Kampen | Lisa A Gilhuijs-Pederson | Theodorus BM Hakvoort | A. Sokolović
[1] A. Moorman,et al. Control of the changes in rat-liver carbamoyl-phosphate synthase (ammonia) protein levels during ontogenesis: Evidence for a perinatal change in immunoreactivity of the enzyme , 1983, Mechanisms of Ageing and Development.
[2] E. Marliss,et al. Hormone-substrate responses to total fasting in lean and obese mice. , 1975, The American journal of physiology.
[3] P. Felig,et al. Liver and kidney metabolism during prolonged starvation. , 1969, The Journal of clinical investigation.
[4] H. Jacob,et al. Implications of circadian gene expression in kidney, liver and the effects of fasting on pharmacogenomic studies. , 2002, Pharmacogenetics.
[5] Sean Ekins,et al. A NOVEL METHOD FOR VISUALIZING NUCLEAR HORMONE RECEPTOR NETWORKS RELEVANT TO DRUG METABOLISM , 2005, Drug Metabolism and Disposition.
[6] M. Elia,et al. Effect of an acute fast on energy compensation and feeding behaviour in lean men and women , 2002, International Journal of Obesity.
[7] G. Martin,et al. Glutamine gluconeogenesis in the small intestine of 72 h-fasted adult rats is undetectable. , 2007, The Biochemical journal.
[8] M. Brand,et al. UCP2 and UCP3 rise in starved rat skeletal muscle but mitochondrial proton conductance is unchanged , 1999, FEBS letters.
[9] D. D’Alessio,et al. Protein, fat, and carbohydrate requirements during starvation: anaplerosis and cataplerosis. , 1998, The American journal of clinical nutrition.
[10] C. Habold,et al. Intestinal gluconeogenesis and glucose transport according to body fuel availability in rats , 2005, The Journal of physiology.
[11] H. Gregersen,et al. Morphometric and Biomechanical Intestinal Remodeling Induced by Fasting in Rats , 2002, Digestive Diseases and Sciences.
[12] H. G. Windmueller,et al. Identification of ketone bodies and glutamine as the major respiratory fuels in vivo for postabsorptive rat small intestine. , 1978, The Journal of biological chemistry.
[13] C. Habold,et al. Intestinal apoptotic changes linked to metabolic status in fasted and refed rats , 2006, Pflügers Archiv.
[14] Y. le Maho,et al. Body composition, energy expenditure, and plasma metabolites in long-term fasting geese. , 1981, The American journal of physiology.
[15] M. Watford. Glutamine metabolism in rat small intestine: synthesis of three-carbon products in isolated enterocytes. , 1994, Biochimica et biophysica acta.
[16] D. Kelly,et al. A critical role for the peroxisome proliferator-activated receptor alpha (PPARalpha) in the cellular fasting response: the PPARalpha-null mouse as a model of fatty acid oxidation disorders. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[17] P. Soeters,et al. Fully automated liquid-chromatographic determination of amino acids. , 1988, Clinical chemistry.
[18] G. Mithieux,et al. Differential time course of liver and kidney glucose-6 phosphatase activity during long-term fasting in rat correlates with differential time course of messenger RNA level , 1996, Molecular and Cellular Biochemistry.
[19] Jean YH Yang,et al. Bioconductor: open software development for computational biology and bioinformatics , 2004, Genome Biology.
[20] Yudong D. He,et al. Expression profiling using microarrays fabricated by an ink-jet oligonucleotide synthesizer , 2001, Nature Biotechnology.
[21] G. Baverel,et al. Effect of starvation on glutamine ammoniagenesis and gluconeogenesis in isolated mouse kidney tubules. , 2002, The Biochemical journal.
[22] A. Johnstone. Fasting – the ultimate diet? , 2007, Obesity reviews : an official journal of the International Association for the Study of Obesity.
[23] George F Cahill,et al. Fuel metabolism in starvation. , 2006, Annual review of nutrition.
[24] P. de Coppet,et al. The Human Copper-Zinc Superoxide Dismutase Gene (SOD1) Proximal Promoter Is Regulated by Sp1, Egr-1, and WT1 via Non-canonical Binding Sites* , 1999, The Journal of Biological Chemistry.
[25] J. Goldstein,et al. Regulation of the mevalonate pathway , 1990, Nature.
[26] E. Marliss,et al. Muscle and splanchnic glutmine and glutamate metabolism in postabsorptive andstarved man. , 1971, The Journal of clinical investigation.
[27] Y. Maho,et al. Refeeding after the late increase in nitrogen excretion during prolonged fasting in the rat , 1991, Physiology & Behavior.
[28] G. Mithieux,et al. Investigation of the mechanism of glycogen rebound in the liver of 72-hour fasted rats. , 1994, The Journal of biological chemistry.
[29] A. Goldberg,et al. Patterns of gene expression in atrophying skeletal muscles: response to food deprivation , 2002, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[30] Y. Maho,et al. Whole-body and tissue protein synthesis during brief and prolonged fasting in the rat. , 1991, Clinical science.
[31] Zhi Liu,et al. Effect of short-term and long-term fasting on transcriptional regulation of metabolic genes in rat tissues. , 2006, Biochemical and biophysical research communications.
[32] J. Romijn,et al. Review article: Regulation of glucose production with special attention to nonclassical regulatory mechanisms: a review. , 2001, Metabolism: clinical and experimental.
[33] M. Caloin. Modeling of lipid and protein depletion during total starvation. , 2004, American journal of physiology. Endocrinology and metabolism.
[34] J. Huneau,et al. Liver glyconeogenesis: a pathway to cope with postprandial amino acid excess in high-protein fed rats? , 2007, American journal of physiology. Regulatory, integrative and comparative physiology.
[35] K. Grove,et al. Metabolic adaptations in skeletal muscle during lactation: complementary deoxyribonucleic acid microarray and real-time polymerase chain reaction analysis of gene expression. , 2004, Endocrinology.
[36] K. Jungermann,et al. The glucose/glucose-6-phosphate cycle in the periportal and perivenous zone of rat liver. , 1982, European journal of biochemistry.
[37] D. Eizirik,et al. The role for endoplasmic reticulum stress in diabetes mellitus. , 2008, Endocrine reviews.
[38] Steven C. Lawlor,et al. GenMAPP, a new tool for viewing and analyzing microarray data on biological pathways , 2002, Nature Genetics.
[39] M. Burg. Molecular basis of osmotic regulation. , 1995, The American journal of physiology.
[40] G F Cahill,et al. Brain metabolism during fasting. , 1967, The Journal of clinical investigation.
[41] P. Schrauwen,et al. The role of uncoupling protein 3 in fatty acid metabolism: protection against lipotoxicity? , 2004, The Proceedings of the Nutrition Society.
[42] Kevin Dobbin,et al. Comparison of microarray designs for class comparison and class discovery , 2002, Bioinform..
[43] R. Mooney,et al. Hepatocytes: critical for glucose homeostasis. , 2004, The international journal of biochemistry & cell biology.
[44] H. Nørrelund. The metabolic role of growth hormone in humans with particular reference to fasting. , 2005, Growth hormone & IGF research : official journal of the Growth Hormone Research Society and the International IGF Research Society.
[45] A. Moorman,et al. Assumption-free analysis of quantitative real-time polymerase chain reaction (PCR) data , 2003, Neuroscience Letters.
[46] C. V. van Noorden,et al. In situ kinetic parameters of glucose-6-phosphatase in the rat liver lobulus. , 1992, The Journal of biological chemistry.
[47] G. Mithieux. The new functions of the gut in the control of glucose homeostasis , 2005, Current opinion in clinical nutrition and metabolic care.
[48] Paola Irato,et al. Zinc, antioxidant systems and metallothionein in metal mediated-apoptosis: biochemical and cytochemical aspects. , 2007, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[49] Y. Maho,et al. Energy contribution of proteins and lipids during prolonged fasting in the rat , 1991 .
[50] M. Patel,et al. Energy metabolism in feasting and fasting. , 1979, Advances in experimental medicine and biology.
[51] T. Nikolskaya,et al. Biological networks and analysis of experimental data in drug discovery. , 2005, Drug discovery today.
[52] Y. Maho,et al. Fasting-induced rise in locomotor activity in rats coincides with increased protein utilization , 1991, Physiology & Behavior.
[53] G. Cahill,et al. Renal gluconeogenesis in acidosis, alkalosis, and potassium deficiency: its possible role in regulation of renal ammonia production. , 1966, The Journal of clinical investigation.
[54] J. Wahren,et al. Splanchnic regulation of glucose production. , 2007, Annual review of nutrition.
[55] G F Cahill,et al. Amino acid metabolism during prolonged starvation. , 1969, The Journal of clinical investigation.
[56] Academisch Proefschrift,et al. The transcriptomic signature of fasting , 2008 .
[57] A. Goldberg,et al. Multiple types of skeletal muscle atrophy involve a common program of changes in gene expression , 2004, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[58] G. Mithieux,et al. Contribution of intestine and kidney to glucose fluxes in different nutritional states in rat. , 2006, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[59] Hubert Schorle,et al. Starvation response in mouse liver shows strong correlation with life-span-prolonging processes. , 2004, Physiological genomics.
[60] C. Habold,et al. Effects of fasting and refeeding on jejunal morphology and cellular activity in rats in relation to depletion of body stores , 2004, Scandinavian journal of gastroenterology.
[61] Lawrence A Leiter,et al. Survival during fasting may depend on fat as well as protein stores. , 1982, JAMA.
[62] A. Dulloo,et al. Role of UCP homologues in skeletal muscles and brown adipose tissue: mediators of thermogenesis or regulators of lipids as fuel substrate? , 1998, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.