Metabolic Control Analysis
Metabolic Control Analysis
批准号:
10004415
负责人:
richard l veech
金额:
$180.45万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至
关键词:
ATP HydrolysisAccountingAgingAlzheimer&aposs DiseaseAlzheimer&aposs disease modelAmyloidAnimalsAreaAscorbic AcidBinding ProteinsBioterrorismBloodBrainBrain regionButylene GlycolsCaloric RestrictionCaloriesCarbohydratesCellular Metabolic ProcessCerebrumChronicCitric Acid CycleCoenzyme ACognitiveCollaborationsContractsDesire for foodDevelopmentDevicesDietDiseaseDrug KineticsEnergy MetabolismEquilibriumEstersFatty acid glycerol estersFreezingFundingGenesGeneticGenetic TranscriptionGoalsHeartHepatocyteHippocampus (Brain)Histone Deacetylase InhibitorHumanHydroxybutyratesImpaired cognitionInstitutional Review BoardsInsulinInsulin ResistanceIonizing radiationJournalsKetone BodiesKetonesKetosisLaboratoriesLongevityMalonyl Coenzyme AMass FragmentographyMeasurementMeasuresMetabolicMetabolic ControlMetabolismMethodsMusNADPNational Institute of Allergy and Infectious DiseaseNematodaNeurodegenerative DisordersNon-Insulin-Dependent Diabetes MellitusNuclearObesity associated diseaseOpticsOralOxidation-ReductionPaperParkinson DiseasePathway interactionsPatientsPerformancePhosphorylationPhysical PerformancePhysiologicalPilot ProjectsPlayProcessPropertyProtocols documentationPublicationsPublishingRadiationRattusReactionReportingResearchResearch PersonnelResearch Project GrantsResolutionResponse ElementsRoleSamplingScientistSerious Adverse EventSignal TransductionStarchSystemTestingTherapeuticTissue SampleToxic effectToxicity TestsTrainingTransgenic MiceUniversitiesWorkantioxidant enzymearmbehavior testcognitive enhancementcognitive performancecollegefeedingfirst-in-humanfree radical oxygenfrontal lobehuman subjectimprovedin vivoinorganic phosphateinsulin sensitivityinsulin signalingmedical schoolsmembermouse modelneurochemistrynovel therapeutic interventionobesity treatmentpalm oilperformance testsprogramspyruvate dehydrogenaserapid techniquereceptorsymposiumtau-1transcription factortreadmilltreatment strategyweek trial
中文摘要
该实验室今年的工作集中在酮体代谢效应的四个方面。
酮体单酯的生产和应用
所有的酮体单酯,D-羟基丁酸酯R,3-丁二醇单酯,都是由托德·金用这里设计的方法在这个实验室合成的。Robert Pawlosky博士利用色谱拆分原理和这里设计的质谱学方法分析了酯的纯度及其光学性质。牛津大学的同事对这些酮酯在人体内的药代动力学进行了进一步的测试。酮酯具有GRAS状态,所有在人类身上的使用都符合牛津大学IRB批准的方案要求。我们已向其提供酮酯的10个合作者的名单附在本报告之后。
酮体代谢提高生理和认知能力
氧化还原状态与磷酸化电位的关系是在1969年描述的(Krebs HA&Veech RL,Bari研讨会),然而,需要10年的时间才能确定细胞内游离镁离子所需的磷酸化潜力能量的精确关系(Veloso D等人JBC 248:4811-119,1973),以及由此产生的含磷代谢反应的平衡常数的变化,以能够确定ATP水解的能量,能量代谢的中心反应(Veech RL和Krebs,HA 1979 JBC 254:6538-47)。酮体代谢克服胰岛素抵抗的能力和ATP水解酶G的增加首先是在工作灌流心脏中被测定的(Sato,N等,FASE B J 9:651-58,1995)。今年,我们将这项工作扩展到人类受试者,克拉克博士和她的团队证明了酮酯的新陈代谢改善了精英运动员的体能表现,从而履行了我们对DARPA的义务,DARPA最初为我们的酮体研究提供了资金。这篇论文发表在《细胞代谢》杂志上,并被评为该杂志2016年度最佳出版物之一。在这一领域的第二篇论文中,与剑桥大学和牛津大学的研究人员合作,发现喂食酮酯饮食的大鼠表现出更强的认知能力。
酮体改变转录因子的定位和活性
与西南大学医学院的研究人员合作,在肝细胞中证明了酮体D-羟丁酸改变了转录因子碳水化合物反应元件结合蛋白ChREBP的核定位,从而抑制了脂肪的合成(4)。在本报告的后面部分,D-羟基丁酸酯对转录的另一种影响被描述为组蛋白脱乙酰基酶的抑制剂,从而增加抗氧化酶的活性。
酮酸酯的代谢通过胰岛素敏感性的丧失来传递。补Krebs循环代谢物缺乏致阿尔茨海默病
描述和回顾了脑丙酮酸脱氢酶失去胰岛素活性和酮体治疗阿尔茨海默病的原因(5)。比较长期喂食酮酯饮食的3XTgAD小鼠的额叶皮质和海马区的样本,Pawlosky博士和他的合作者发现(6)在这个阿尔茨海默病模型中,海马区Krebs循环中间产物的缺乏被逆转了。
这些发现对于开发治疗阿尔茨海默病的治疗策略的重要性是《神经化学杂志》(Puchowicz M.A.等人,J Neurochem)一篇专题文章的主题。141:162-4,2017)。
酮体代谢降低游离NADP+/NADPH比值,从而减轻氧自由基损伤
1969年,我们发现体内的游离NADP+/NADPH比值是最负的,其氧化还原电位为-0.42V(Krebs,H.A和Veech RL,1969)。1995年,我们证明了酮体的代谢减少了NADP对。我们现在回顾了氧化还原活性物质的使用,说明了为什么使用单一的氧化还原活性物质,如抗坏血酸等,在体内没有明显的影响,但由于细胞内氧化还原对的连接,酮体的新陈代谢可以减轻氧自由基损伤。已向核生物恐怖主义和培训小组、核辐射委员会、机构间辐射标准指导委员会和NIAID对策方案介绍了酮机构减轻流氓核装置电离辐射损害的能力。
酮体模拟卡路里限制的寿命延长特性。
长期以来,人们一直知道限制热量可以延长从线虫到老鼠的许多物种的寿命。喂食酮可以减少胰岛素/胰岛素生长因子受体中的信号,这是延长寿命的遗传途径中的一个主要因素。D-羟基丁酸酯是组蛋白脱乙酰酶的天然抑制剂,它抑制FOXO基因的转录,从而增加抗氧化酶的转录。因此,酮病减少了胰岛素信号,增加了抗氧化酶,并增加了减少ROS损伤的还原潜力,这在延长寿命方面发挥了重要作用。
英文摘要
The work of the laboratory for this year was centered on four aspects of the effects of ketone body metabolism.
Manufacture and Use of Ketone Body Monoesters
All the ketone body monoesters, D--hydroxybutyrate R 1,3 butanediol monoester, used in all the studies reported here were made in this laboratory by Todd King using methods devised here. The purity of the ester and its optical properties were analyzed by Dr Robert Pawlosky using chromatographic resolution principles and mass spec methods devised here. Further tests of the pharmacokinetics of these ketones esters in human subjects were performed by our colleagues at Oxford (1). The ketone esters have GRAS status and all use in humans complied with protocol requirements approved by the Oxford University IRB. The list of 10 collaborators to which we have supplied ketone ester is appended to this report.
Ketone Body Metabolism Enhances Physiological and Cognitive Performance
The relationship of redox states to phosphorylation potential was described in 1969 (Krebs HA &Veech RL, Bari Symposium) However it required 10 years to determine the precise relationship of the energy of the phosphorylation potential required determination of the intracellular free Mg2+ (Veloso D et al JBC 248: 4811-119, 1973) and the resultant changes in the equilibrium constants of phosphate containing metabolic reactions to be able to determine the energy of the hydrolysis of ATP , the central reaction of energy metabolism ( Veech RL and Krebs, HA 1979 JBC 254: 6538-47) . The ability of ketone body metabolism to overcome insulin resistance and the increase in the G of ATP hydrolysis was first determined in working perfused heart (Sato, N et al FASEB J 9: 651-58, 1995). This year we extended this work to human subjects where Dr Clarke and her group showed that the metabolism of ketone esters improved the physical performance in elite athletes (2) thus fulfilling our obligation to DARPA which originally provided the funds for our work on ketone bodies. This paper was published in Cell Metabolism and was cited as among the best publications in that journal for 2016. In a second paper in this area, done in collaboration with workers from both Cambridge and Oxford, it was shown that rats fed a ketone ester diet showed enhanced cognitive performance (3)
Ketone Bodies Alter the Localization and Activity of Transcription Factors
In collaboration with investigators at Southwestern U Medical school, it was demonstrated in hepatic cells that the ketone body D--hydroxybutyrate altered the nuclear localization of the transcription factor carbohydrate-response element binding protein, ChREBP, thereby inhibiting fat synthesis (4). In a later section of this report, another effect of D--hydroxybutyrate on transcription is described as an inhibitor of histone deacetylase thus increasing the activity of antioxidant enzymes.
The Metabolism of Ketone Esters By Passes the Loss of Insulin Sensitivity. Causing Alzheimers Disease By Replenishing A Deficiency of Krebs Cycle Metabolites
The description and review of the causes, resulting from a loss of insulin activation of cerebral pyruvate dehydrogenase and the treatment of resultant Alzheimers disease with ketone bodies is presented (5). Comparing samples from the frontal cortex to those from hippocampal regions from the brains of 3XTgAD mice chronically fed a ketone ester diet, Dr Pawlosky and his collaborators showed (6) that the deficiency in Krebs cycle intermediates in the hippocampal region was reversed in this model of Alzheimers disease.
The importance of these findings toward the development of a therapeutic strategy for the treatment of Alzheimers disease was the topic of a special article in the Journal of Neurochemistry (Puchowicz M.A. et al, J Neurochem. 141: 162-4, 2017).
The Metabolism of Ketone Bodies Reduces the Free NADP+ /NADPH Ratio Thus Mitigating Oxygen Free Radical Damage
In 1969 we had shown that the free NADP+ /NADPH ratio, with a redox potential of -0.42V was the most negative in the body (Krebs,H.A and Veech RL, 1969). In 1995, we showed that the metabolism of ketone bodies reduce the NADP couple. We now reviewed the use of redox active agents, showing why the use of single redox active agents such as ascorbic acid and the like were without demonstrable in vivo effects but that the metabolism of ketone bodies due to the linkage of the intracellular redox couple could mitigate oxygen free radical damage (7). The ability of ketone bodies to mitigate the damage of ionizing radiation from rogue nuclear devices has been presented to the Nuclear Bioterrorism and Training Group, the Nuclear Radiation Commission, the Interagency Steering Committee on Radiation Standards and the NIAID Countermeasures Program.
Ketone Bodies Mimic the Life Span Extending Properties of Caloric Restriction.
Caloric restriction has long been known to extend life span in many species from nematodes to mice. Feeding ketones can decrease signaling in the insulin/ insulin grow factor receptor, a major factor in the genetic pathway of life span extension. D--hydroxybutyrate is the natural inhibitor of the histone deacetylase which represses the transcription of the FOXO gene thus increasing the transcription of antioxidant enzymes. Thus ketosis decreases insulin signaling, increases antioxidant enzymes and increases the reducing potential to diminish ROS damage which plays an important role in prolonging life span (8)
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
ION GRADIENTS AND METABOLIC ENERGY IN ANIMAL TISSUE
-
批准号:6431371
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolic Control Analysis
-
批准号:6431372
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Ion Gradients And Metabolic Energy In Animal Tissue
-
批准号:6504645
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Development of Ketone Ester Diets
-
批准号:6983087
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolic Control Analysis
-
批准号:7591919
-
项目类别:
-
资助金额:$83.25万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolic Control Analysis
-
批准号:7317396
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolite control of transcription
-
批准号:7732098
-
项目类别:
-
资助金额:$23.16万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
The Effects of Acetate on Brain
-
批准号:8344668
-
项目类别:
-
资助金额:$71.18万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolite control of transcription
-
批准号:6818482
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolic Control Analysis
-
批准号:7732097
-
项目类别:
-
资助金额:$54.62万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
The Effects of Acetate on Brain
-
批准号:7963829
-
项目类别:
-
资助金额:$49.61万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Development of Ketone Ester Diets
-
批准号:7963828
-
项目类别:
-
资助金额:$129.38万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolic Control Analysis
-
批准号:6097581
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Ion Gradients And Metabolic Energy In Animal Tissue
-
批准号:6676973
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Ion Gradients And Metabolic Energy In Animal Tissue
-
批准号:6983066
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Development of Ketone Ester Diets
-
批准号:8344992
-
项目类别:
-
资助金额:$89.09万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
The Effects of Acetate on Brain
-
批准号:7146224
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Metabolic Control Analysis
-
批准号:8746458
-
项目类别:
-
资助金额:$130.85万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Ion Gradients And Metabolic Energy In Animal Tissue
-
批准号:7317738
-
项目类别:
-
资助金额:$0.0万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
Development of Ketone Ester Diets
-
批准号:8746884
-
项目类别:
-
资助金额:$87.24万
-
财政年份:--
-
负责人:richard l veech
-
依托单位:
海外基金