Complex interaction between circadian rhythm and diet on bile acid homeostasis in male rats
暂无分享,去创建一个
Albert K Groen | A. Kalsbeek | S. L. la Fleur | J. Romijn | P. de Goede | M. Soeters | J. E. Oosterman | E. Foppen | A. Boelen | A. Groen | E. M. de Vries | H. Eggink | Anita Boelen | Andries Kalsbeek | Johannes A Romijn | Ewout Foppen | M. Koehorst | Hannah M Eggink | Johanneke E Oosterman | Paul de Goede | Emmely M de Vries | Martijn Koehorst | Susanne E la Fleur | Maarten R Soeters
[1] J. Epstein,et al. Circadian control of bile acid synthesis by a KLF15-Fgf15 axis , 2015, Nature Communications.
[2] Karl Kornacker,et al. JTK_CYCLE: An Efficient Nonparametric Algorithm for Detecting Rhythmic Components in Genome-Scale Data Sets , 2010, Journal of biological rhythms.
[3] D. Russell,et al. Loss of nuclear receptor SHP impairs but does not eliminate negative feedback regulation of bile acid synthesis. , 2002, Developmental cell.
[4] L. Moore,et al. A regulatory cascade of the nuclear receptors FXR, SHP-1, and LRH-1 represses bile acid biosynthesis. , 2000, Molecular cell.
[5] K. Einarsson,et al. Hepatic uptake of bile acids in man. Fasting and postprandial concentrations of individual bile acids in portal venous and systemic blood serum. , 1982, The Journal of clinical investigation.
[6] Rongkun Shen,et al. Crucial roles of mixed‐lineage leukemia 3 and 4 as epigenetic switches of the hepatic circadian clock controlling bile acid homeostasis in mice , 2015, Hepatology.
[7] M. Hussain,et al. Diurnal regulation of MTP and plasma triglyceride by CLOCK is mediated by SHP. , 2010, Cell metabolism.
[8] J. Chiang,et al. Glucose and Insulin Induction of Bile Acid Synthesis , 2011, The Journal of Biological Chemistry.
[9] A. Kalsbeek,et al. Circadian Control of Insulin Secretion Is Independent of the Temporal Distribution of Feeding , 1998, Physiology & Behavior.
[10] Ethan D Buhr,et al. Molecular components of the Mammalian circadian clock. , 2013, Handbook of experimental pharmacology.
[11] V. Beneš,et al. The MIQE guidelines: minimum information for publication of quantitative real-time PCR experiments. , 2009, Clinical chemistry.
[12] J. Chiang,et al. Mechanism of tissue‐specific farnesoid X receptor in suppressing the expression of genes in bile‐acid synthesis in mice , 2012, Hepatology.
[13] S. Kliewer,et al. Differential regulation of bile acid homeostasis by the farnesoid X receptor in liver and intestine Published, JLR Papers in Press, August 24, 2007. , 2007, Journal of Lipid Research.
[14] A. Kalsbeek,et al. The role of feeding rhythm, adrenal hormones and neuronal inputs in synchronizing daily clock gene rhythms in the liver , 2016, Molecular and Cellular Endocrinology.
[15] F. Shanahan,et al. Unconjugated Bile Acids Influence Expression of Circadian Genes: A Potential Mechanism for Microbe-Host Crosstalk , 2016, PloS one.
[16] M. Luijendijk,et al. A free-choice high-fat high-sugar diet induces changes in arcuate neuropeptide expression that support hyperphagia , 2010, International Journal of Obesity.
[17] G. Gil,et al. Suppression of sterol 12alpha-hydroxylase transcription by the short heterodimer partner: insights into the repression mechanism. , 2001, Nucleic acids research.
[18] B. Staels,et al. Role of bile acids and bile acid receptors in metabolic regulation. , 2009, Physiological reviews.
[19] S. Hashimoto,et al. Regular Feeding Plays an Important Role in Cholesterol Homeostasis Through the Liver Circadian Clock , 2009, Circulation research.
[20] C. Fontaine,et al. Regulation of bile acid synthesis by the nuclear receptor Rev-erbalpha. , 2008, Gastroenterology.
[21] Joseph S. Takahashi,et al. Circadian Integration of Metabolism and Energetics , 2010, Science.
[22] J. Gustafsson,et al. Transcriptional corepression by SHP: molecular mechanisms and physiological consequences , 2005, Trends in Endocrinology & Metabolism.
[23] D. Moore,et al. Small Heterodimer Partner (NR0B2) Coordinates Nutrient Signaling and the Circadian Clock in Mice. , 2016, Molecular endocrinology.
[24] T. Nakajima,et al. SIMPLE AND RAPID QUANTITATION OF 21 BILE ACIDS IN RAT SERUM AND LIVER BY UPLC-MS-MS: EFFECT OF HIGH FAT DIET ON GLYCINE CONJUGATES OF RAT BILE ACIDS , 2013, Nagoya journal of medical science.
[25] A. Chaix,et al. The effects of time-restricted feeding on lipid metabolism and adiposity , 2015, Adipocyte.
[26] J. Holst,et al. Postprandial gut hormone responses and glucose metabolism in cholecystectomized patients. , 2013, American journal of physiology. Gastrointestinal and liver physiology.
[27] D. Moore,et al. Circadian Dysregulation Disrupts Bile Acid Homeostasis , 2009, PloS one.
[28] M. Luijendijk,et al. A reciprocal interaction between food-motivated behavior and diet-induced obesity , 2007, International Journal of Obesity.
[29] Mark M. Davis,et al. MOLECULAR COMPONENTS OF , 1992 .
[30] N. LaRusso,et al. Diurnal serum levels of primary conjugated bile acids 1 , 1978, Gut.
[31] B. Angelin,et al. Postprandial serum bile acids in healthy man. Evidence for differences in absorptive pattern between individual bile acids. , 1977, Gut.
[32] B. Angelin,et al. Bile acid synthesis in humans has a rapid diurnal variation that is asynchronous with cholesterol synthesis. , 2005, Gastroenterology.
[33] N. LaRusso,et al. Determinants of fasting and postprandial serum bile acid levels in healthy man , 1978, The American Journal of Digestive Diseases.
[34] G. Murphy,et al. Diurnal changes in serum unconjugated bile acids in normal man. , 1982, Gut.
[35] I. Amit,et al. Microbiota Diurnal Rhythmicity Programs Host Transcriptome Oscillations , 2016, Cell.
[36] D. Lavery,et al. Circadian transcription of the cholesterol 7 alpha hydroxylase gene may involve the liver-enriched bZIP protein DBP. , 1993, Genes & development.
[37] E. Want,et al. Systemic gut microbial modulation of bile acid metabolism in host tissue compartments , 2010, Proceedings of the National Academy of Sciences.
[38] J. Chiang,et al. Retinoic Acid-related Orphan Receptor α Regulates Diurnal Rhythm and Fasting Induction of Sterol 12α-Hydroxylase in Bile Acid Synthesis* , 2013, The Journal of Biological Chemistry.
[39] W. Duane,et al. Diurnal rhythms of bile acid production in the rat. , 1979, The American journal of physiology.
[40] K. Faber,et al. Human and rat bile acid–CoA:amino acid N‐acyltransferase are liver‐specific peroxisomal enzymes: Implications for intracellular bile salt transport , 2007, Hepatology.
[41] T. A. Kerr,et al. Molecular basis for feedback regulation of bile acid synthesis by nuclear receptors. , 2000, Molecular cell.
[42] M. Everts,et al. K(+)-induced inhibition of contractile force in rat skeletal muscle: role of active Na(+)-K+ transport. , 1991, The American journal of physiology.
[43] I. Amit,et al. Microbiota Diurnal Rhythmicity Programs Host Transcriptome Oscillations , 2016, Cell.
[44] A. Kalsbeek,et al. A Free-Choice High-Fat High-Sugar Diet Alters Day–Night Per2 Gene Expression in Reward-Related Brain Areas in Rats , 2018, Front. Endocrinol..
[45] A. Kalsbeek,et al. Feeding during the resting phase causes profound changes in physiology and desynchronization between liver and muscle rhythms of rats , 2016, The European journal of neuroscience.
[46] D. Levitt,et al. Regulation of bile acid synthesis in man. Presence of a diurnal rhythm. , 1983, The Journal of clinical investigation.
[47] F. Kuipers,et al. Beyond intestinal soap—bile acids in metabolic control , 2014, Nature Reviews Endocrinology.
[48] Saptarsi M. Haldar,et al. Klf15 orchestrates circadian nitrogen homeostasis. , 2012, Cell metabolism.
[49] C. Klaassen,et al. Diurnal Variations of Mouse Plasma and Hepatic Bile Acid Concentrations as well as Expression of Biosynthetic Enzymes and Transporters , 2011, PloS one.
[50] T. Kakizawa,et al. Synergistic regulation of the mouse orphan nuclear receptor SHP gene promoter by CLOCK-BMAL1 and LRH-1. , 2007, Biochemical and biophysical research communications.
[51] A. Hofmann,et al. Bile Acids: Chemistry, Pathochemistry, Biology, Pathobiology, and Therapeutics , 2008, Cellular and Molecular Life Sciences.
[52] T. Vilsbøll,et al. Postprandial Plasma Concentrations of Individual Bile Acids and FGF-19 in Patients With Type 2 Diabetes. , 2016, The Journal of clinical endocrinology and metabolism.
[53] A. Kalsbeek,et al. Effects of 6‐meals‐a‐day feeding and 6‐meals‐a‐day feeding combined with adrenalectomy on daily gene expression rhythms in rat epididymal white adipose tissue , 2016, Genes to cells : devoted to molecular & cellular mechanisms.
[54] J. Chiang,et al. Short-Term Circadian Disruption Impairs Bile Acid and Lipid Homeostasis in Mice , 2015, Cellular and molecular gastroenterology and hepatology.