Search results for "Carnitine O-Palmitoyltransferase"

showing 10 items of 10 documents

Circadian and Dopaminergic Regulation of Fatty Acid Oxidation Pathway Genes in Retina and Photoreceptor Cells.

2016

The energy metabolism of the retina might comply with daily changes in energy demand and is impaired in diabetic retinopathy-one of the most common causes of blindness in Europe and the USA. The aim of this study was to investigate putative adaptation of energy metabolism in healthy and diabetic retina. Hence expression analysis of metabolic pathway genes was performed using quantitative polymerase chain reaction, semi-quantitative western blot and immunohistochemistry. Transcriptional profiling of key enzymes of energy metabolism identified transcripts of mitochondrial fatty acid β-oxidation enzymes, i.e. carnitine palmitoyltransferase-1α (Cpt-1α) and medium chain acyl-CoA dehydrogenase (A…

0301 basic medicineMalePhysiologyDopamineMice ObeseGene Expressionlcsh:MedicineBiochemistryAcyl-CoA DehydrogenaseMice0302 clinical medicineCatecholaminesEndocrinologyMedicine and Health SciencesAminesEnzyme Chemistrylcsh:ScienceBeta oxidationMice KnockoutMice Inbred C3HMultidisciplinaryOrganic CompoundsDopaminergicFatty AcidsNeurochemistryDiabetic retinopathyNeurotransmittersCircadian RhythmChemistryCircadian Oscillatorsmedicine.anatomical_structurePhysical SciencesFemaleAnatomyOxidation-Reductionmedicine.drugResearch Articlemedicine.medical_specialtyBiogenic AminesEndocrine DisordersOcular AnatomyBiologyRetinaEnzyme Regulation03 medical and health sciencesOcular SystemInternal medicinemedicineGeneticsDiabetes MellitusAnimalsPhotoreceptor CellsGene RegulationCircadian rhythmCarnitineACADMRetinaDiabetic RetinopathyCarnitine O-PalmitoyltransferaseReceptor Melatonin MT1Receptors Dopamine D4Organic Chemistrylcsh:RChemical CompoundsBiology and Life Sciencesmedicine.diseaseHormonesMice Inbred C57BLMetabolic pathwayDisease Models Animal030104 developmental biologyEndocrinologyMetabolismMicroscopy FluorescenceMetabolic DisordersEnzymologylcsh:Qsense organsEnergy MetabolismPhysiological ProcessesChronobiology030217 neurology & neurosurgeryNeurosciencePLoS ONE
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Mitochondrial Fatty Acid β-Oxidation Inhibition Promotes Glucose Utilization and Protein Deposition through Energy Homeostasis Remodeling in Fish.

2020

BACKGROUND: Fish cannot use carbohydrate efficiently and instead utilize protein for energy supply, thus limiting dietary protein storage. Protein deposition is dependent on protein turnover balance, which correlates tightly with cellular energy homeostasis. Mitochondrial fatty acid β-oxidation (FAO) plays a crucial role in energy metabolism. However, the effect of remodeled energy homeostasis caused by inhibited mitochondrial FAO on protein deposition in fish has not been intensively studied. OBJECTIVES: This study aimed to identify the regulatory role of mitochondrial FAO in energy homeostasis maintenance and protein deposition by studying lipid, glucose, and protein metabolism in fish. M…

0301 basic medicineMaleProtein metabolismMedicine (miscellaneous)MitochondrionEnergy homeostasis03 medical and health scienceschemistry.chemical_compoundNile tilapia0302 clinical medicineAdjuvants ImmunologicmedicineAnimalsHomeostasisInsulinCarnitineProtein kinase ACells CulturedZebrafishNutrition and DieteticsbiologyCarnitine O-PalmitoyltransferaseChemistryFatty AcidsProtein turnoverProteinsMetabolismCichlidsDNACytochromes bbiology.organism_classificationMitochondria030104 developmental biologyGlucoseBiochemistryMutationHepatocytesNutrient Physiology Metabolism and Nutrient-Nutrient InteractionsEnergy MetabolismOxidation-Reduction030217 neurology & neurosurgerymedicine.drugMethylhydrazinesThe Journal of nutrition
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Loss of response of carnitine palmitoyltransferase I to okadaic acid in transformed hepatic cells

1998

The specific activity of carnitine palmitoyltransferase I (CPT-I) was similar in mitochondria isolated from rat Fao and human HepG2 hepatoma cells and from rat hepatocytes, but almost twofold higher in permeabilized hepatoma cells than in permeabilized hepatocytes. Short-term exposure to okadaic acid induced a ca. 80% stimulation of CPT-I in hepatocytes, whereas no significant response of the enzyme from hepatoma cells was evident. Thus, the high CPT-I activity displayed by hepatoma cells may be reached by hepatocytes upon challenge to okadaic acid. Reconstitution experiments with purified mitochondrial and cytoskeletal fractions showed that the cytoskeleton of hepatocytes produced a more r…

Carcinoma Hepatocellularendocrine system diseasesMitochondria LiverMitochondrionBiologyBiochemistrychemistry.chemical_compoundLiver Neoplasms ExperimentalOkadaic AcidTumor Cells CulturedmedicineAnimalsHumansheterocyclic compoundsCarnitine O-palmitoyltransferaseCytoskeletonneoplasmsCell Line TransformedPharmacologyCarnitine O-PalmitoyltransferaseLiver NeoplasmsOkadaic aciddigestive system diseasesMitochondriaRatsCell biologyKineticsmedicine.anatomical_structureBiochemistrychemistryCell cultureHepatocyteHepatic stellate cellCarnitine palmitoyltransferase IBiochemical Pharmacology
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Fatty acid oxidation and related gene expression in heart depleted of carnitine by mildronate treatment in the rat.

2004

The metabolic and genic effects induced by a 20-fold lowering of carnitine content in the heart were studied in mildronate-treated rats. In the perfused heart, the proportion of palmitate taken up then oxidized was 5-10% lower, while the triacylglycerol (TAG) formation was 100% greater than in controls. The treatment was shown to increase the maximal capacity of heart homogenates to oxidize palmitate, the mRNA level of carnitine palmitoyltransferase I (CPT-I) isoforms, the specific activity of CPT-I in subsarcolemmal mitochondria and the total carnitine content of isolated mitochondria. Concomitantly, the increased mRNA expression of lipoprotein lipase, fatty acid translocase and enzymes of…

MaleClinical BiochemistryPalmitic AcidBlood lipidsBiologyMitochondrionIn Vitro TechniquesMitochondria HeartOxygen ConsumptionCarnitinemedicineAnimalsCarnitineRNA MessengerRats WistarMolecular BiologyBeta oxidationHeart metabolismTriglycerideschemistry.chemical_classificationLipoprotein lipaseCarnitine O-PalmitoyltransferaseEsterificationMyocardiumFatty AcidsFatty acidBiological TransportCardiovascular AgentsCell BiologyGeneral MedicineRatsPerfusionLipoprotein LipasechemistryBiochemistryGene Expression RegulationCarnitine palmitoyltransferase IOxidation-Reductionmedicine.drugMethylhydrazinesMolecular and cellular biochemistry
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Pathway of alpha-linolenic acid through the mitochondrial outer membrane in the rat liver and influence on the rate of oxidation. Comparison with lin…

1989

The movement of alpha-linolenic acid (C18:3, n-3) through the mitochondrial outer membrane to oxidation sites was studied in rat liver and compared with the movement of linoleic acid (C18:2, n-6) and oleic acid (C18:1, n-9). All differ in the degree of unsaturation, but have the same chain length and the same position of the first double bond when counted from the carboxyl end. The following results were obtained. (1) The overall beta-oxidation in total mitochondria was in the order C18:3, n-3 greater than C18:2, n-6 greater than C18:1, n-9, independent of the amount of albumin in the medium. (2) The rate of formation of acylcarnitine from acyl-CoA was higher with oleoyl-CoA than with linol…

MaleLinolenic AcidsLinoleic acidPotassiumchemistry.chemical_elementMitochondria LiverOleic AcidsMitochondrionIn Vitro TechniquesBiochemistryLinoleic Acidchemistry.chemical_compoundCarnitinemedicineAnimalsCarnitineMolecular BiologyDegree of unsaturationCarnitine O-PalmitoyltransferaseChemistryalpha-Linolenic acidBiological TransportRats Inbred StrainsCell BiologyIntracellular MembranesPeroxisomeRatsOleic acidBiochemistryLinoleic Acidslipids (amino acids peptides and proteins)Acyl Coenzyme AOxidation-Reductionmedicine.drugOleic AcidResearch ArticleThe Biochemical journal
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Involvement of microsomal vesicles in part of the sensitivity of carnitine palmitoyltransferase I to malonyl-CoA inhibition in mitochondrial fraction…

1994

Liver mitochondrial fractions as normally isolated contain only 10-20% of total mitochondria and may not be representative of the whole mitochondrial population. This study was designed to evaluate the dependence of the sensitivity of carnitine palmitoyl-transferase I (CPT I) to malonyl-CoA inhibition in mitochondrial fractions that are not normally studied. Four fractions prepared from rat liver were found to be contaminated to different extents by microsome vesicles, on the basis of marker-enzyme activities and micrographic data. Purification of mitochondrial fractions on a Percoll gradient decreased to some extent the microsomal contamination, which was due in part to the existence of cl…

MalePopulationMitochondria LiverMitochondrionBiologyCell FractionationBiochemistrychemistry.chemical_compoundAdenosine TriphosphatemedicineCentrifugation Density GradientAnimalsCarnitineRats WistareducationMolecular Biologyeducation.field_of_studyCarnitine O-PalmitoyltransferaseEndoplasmic reticulumCell BiologyRatsMalonyl Coenzyme AMalonyl-CoABiochemistrychemistryMicrosomeMicrosomes LiverCarnitine palmitoyltransferase IPercollmedicine.drugResearch Article
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Effect of dietary n−3 and n−6 polyunsaturated fatty acids on lipid-metabolizing enzymes in obese rat liver

1994

This study was designed to examine whether n-3 and n-6 polyunsaturated fatty acids at a very low dietary level (about 0.2%) would alter liver activities in respect to fatty acid oxidation. Obese Zucker rats were used because of their low level of fatty acid oxidation, which would make increases easier to detect. Zucker rats were fed diets containing different oil mixtures (5%, w/w) with the same ratio of n-6/n-3 fatty acids supplied either as fish oil or arachidonic acid concentrate. Decreased hepatic triacylglycerol levels were observed only with the diet containing fish oil. In mitochondrial outer membranes, which support carnitine palmitoyltransferase I activity, cholesterol content was …

MaleUrate OxidaseMitochondria LiverBiochemistryMicechemistry.chemical_compoundDietary Fats UnsaturatedFatty Acids Omega-6Fatty Acids Omega-3AnimalsObesityFood scienceMonoamine OxidaseBeta oxidationchemistry.chemical_classificationCarnitine O-PalmitoyltransferasePalmitoyl Coenzyme ACholesterolOrganic ChemistryFatty acidCell BiologyPeroxisomeLipid MetabolismFish oilRatsRats ZuckerMalonyl Coenzyme AchemistryBiochemistryFatty Acids UnsaturatedMicrosomes LiverArachidonic acidCarnitine palmitoyltransferase ICarboxylic Ester HydrolasesSubcellular FractionsPolyunsaturated fatty acidLipids
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Hepatic steatosis is not due to impaired fatty acid oxidation capacities in C57BL/6J mice fed the conjugated trans-10,cis-12-isomer of linoleic acid.

2004

Decreased body fat mass and liver steatosis have been reported in mice fed diets containing the conjugated linoleic acid trans-10,cis-12-C18:2 (CLA2), but not in those fed diets containing cis-9,trans-11-C18:2 (CLA1). Because the decrease in fatty acid (FA) oxidation may cause fat accumulation, we questioned whether the effects of both CLAs on enzyme activities and mRNA expression were related to liver FA oxidation. To address this question, 7-wk-old male C57BL/6J mice were fed for 4 wk a diet supplemented with 1% CLA1, CLA2, or cis-9-C18:1 (control) esterified as triacylglycerols. In CLA2-fed mice, the proportions of CLA2 in the total FA of liver lipids were substantially lower than those …

Malemedicine.medical_specialtyLinoleic acidConjugated linoleic acidMedicine (miscellaneous)Mitochondria LiverBiologychemistry.chemical_compoundMiceDietary Fats UnsaturatedInternal medicinemedicineAnimalsLinoleic Acids ConjugatedCarnitineRNA MessengerEnzyme InhibitorsUnsaturated fatty acidTriglycerideschemistry.chemical_classificationNutrition and DieteticsCarnitine O-PalmitoyltransferaseEsterificationReverse Transcriptase Polymerase Chain ReactionFatty liverFatty AcidsFatty acidmedicine.diseaseFatty LiverMalonyl Coenzyme AMice Inbred C57BLEndocrinologychemistryBiochemistryLiverCarnitine palmitoyltransferase IOxidation-ReductionPolyunsaturated fatty acidmedicine.drug
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Paracrine Activation of Hepatic CB1 Receptors by Stellate Cell-Derived Endocannabinoids Mediates Alcoholic Fatty Liver

2008

SummaryAlcohol-induced fatty liver, a major cause of morbidity, has been attributed to enhanced hepatic lipogenesis and decreased fat clearance of unknown mechanism. Here we report that the steatosis induced in mice by a low-fat, liquid ethanol diet is attenuated by concurrent blockade of cannabinoid CB1 receptors. Global or hepatocyte-specific CB1 knockout mice are resistant to ethanol-induced steatosis and increases in lipogenic gene expression and have increased carnitine palmitoyltransferase 1 activity, which, unlike in controls, is not reduced by ethanol treatment. Ethanol feeding increases the hepatic expression of CB1 receptors and upregulates the endocannabinoid 2-arachidonoylglycer…

Malemedicine.medical_specialtyPhysiologyHUMDISEASEArachidonic AcidsGlyceridesMiceCarnitine palmitoyltransferase 1PiperidinesReceptor Cannabinoid CB1Internal medicineCannabinoid Receptor ModulatorsParacrine CommunicationmedicineAnimalsReceptorDiet Fat-RestrictedMolecular BiologyCells CulturedMice KnockoutCarnitine O-PalmitoyltransferaseEthanolChemistryLipogenesisFatty AcidsFatty liverCell Biologymedicine.diseaseEndocannabinoid systemCoculture TechniquesUp-RegulationMice Inbred C57BLDisease Models AnimalLipoprotein LipaseEndocrinologyLiverLipogenesisHepatocytesHepatic stellate cellPyrazoleslipids (amino acids peptides and proteins)Alcoholic fatty liverFatty Acid SynthasesRimonabantSteatosisSterol Regulatory Element Binding Protein 1Oxidation-ReductionEndocannabinoidsFatty Liver AlcoholicCell Metabolism
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Polyunsaturated n-3 and n-6 fatty acids at a low level in the diet alter mitochondrial outer membrane parameters in Wistar rat liver

1995

Abstract This study was designed to examine whether n-3 and n-6 polyunsaturated fatty acids (PUFA) at a very low level in the diet (about 0.2%) may alter the fatty acid composition of mitochondrial outer membranes and the characteristics of carnitine palmitoyltransferase I (CPTI) activity in the liver of normal Wistar rats. The animals were fed diets containing different oil mixtures (5% wt/wt) with the same ratio of n-6 n-3 fatty acids supplied either as fish oil or arachidonic acid concentrate. The cholesterol content of the mitochondrial outer membranes from liver was similar for all diets, while the percentage of 22:6n-3 and 20:4n-6 in phospholipids was enhanced with the diets containin…

medicine.medical_specialtyEndocrinology Diabetes and Metabolism[SDV]Life Sciences [q-bio]Clinical BiochemistryMitochondrionBiologyBiochemistry03 medical and health scienceschemistry.chemical_compoundInternal medicinemedicineCarnitine O-palmitoyltransferaseMolecular BiologyComputingMilieux_MISCELLANEOUS030304 developmental biology2. Zero hungerchemistry.chemical_classification0303 health sciencesNutrition and DieteticsCholesterol030302 biochemistry & molecular biologyMetabolismFish oilEndocrinologyBiochemistrychemistrylipids (amino acids peptides and proteins)Arachidonic acidCarnitine palmitoyltransferase IPolyunsaturated fatty acid
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