Alterations in membrane composition and function eith calorie restriction
Alterations in membrane composition and function eith calorie restriction
批准号:
8127789
负责人:
JON J. RAMSEY
金额:
$26.69万
依托单位国家:
美国
项目类别:
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-09-15 至 2013-08-31
关键词:
AffectAge of OnsetAgingAntioxidantsBiochemicalBioenergeticsC57BL/6 MouseCaloric RestrictionCell membraneDietDietary InterventionElectron TransportEnergy MetabolismEnzymesEquilibriumFatty AcidsFatty acid glycerol estersFish OilsFree RadicalsGenesGeneticInterventionIonsKnock-outLaboratoriesLinkLinoleic AcidsLipid PeroxidationLipidsLiverLongevityMaintenanceMalnutritionMeasuresMembraneMembrane LipidsMembrane ProteinsMitochondriaMusNQO1 geneNa(+)-K(+)-Exchanging ATPaseOmega-3 Fatty AcidsOxidation-ReductionOxidative StressOxidoreductasePhospholipidsPlasmaPlayPolyunsaturated Fatty AcidsProcessProductionProtonsQuinone ReductasesReactive Oxygen SpeciesResearch PersonnelRodentRoleSiteSkeletal MuscleSourceSoybean OilSphingomyelinaseSystemTestingTimeTissuesUbiquinonebasebeefdesignenzyme activityfeedinggene therapyharmanmenhadenmitochondrial membraneoxidative damagepreventprogramstallowtheories
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Calorie restriction (CR), without malnutrition, is the only intervention that has consistently been shown to increase maximum life span and prevent or delay the onset of age-associated pathophysiological changes in laboratory rodents. It has been proposed that the degree of membrane fatty acid unsaturation is a major factor contributing to longevity, and that a decrease in membrane unsaturation may be the mechanism for the retardation of aging with CR. Such theories that link membranes to aging solely through modulation of membrane lipid peroxidizability, however, may be too general since they overlook the affect lipid alterations will also have on membrane-linked processes, such as reactive oxygen species (ROS) production and electron transport chain activity. Also, these theories ignore the role membrane proteins play in protecting against oxidative damage. Considering the central role that membranes play in regulating oxidative stress, we hypothesize that CR causes an alteration in plasma and mitochondria! membrane composition that results in a new bioenergetic balance leading to decreases in both ROS production and membrane oxidative damage. We propose three specific aims to test this theory: Specific Aim 1; To determine membrane composition (fatty acids, phospholipids and coenzyme Q) of mitochondrial and plasma membranes from liver and skeletal muscle of control and 40% CR C57BL/6 mice. Comprehensive lipid analysis will be completed to quantify all classes of phospholipids and their constituent fatty acids. Markers of membrane oxidative damage will also be measured. These studies will thoroughly quantify CR-induced changes in membrane lipid composition, and determine if these changes result in a decrease in membrane peroxidizability. Specific Aim 2; To determine if CR induces alterations in mitochondrial and plasma membrane-linked processes in liver and skeletal muscle from control and 40% CR C57BL/6 mice. Membrane-linked processes related to energy expenditure, ROS production, oxidative damage, and antioxidant defenses will be measured. Groups of CR mice will also be fed diets where the fat source is beef tallow (highly saturated), soybean oil (high linoleic acid), or menhaden fish oil (high n-3 polyunsaturated fatty acids) to determine if alterations in membrane fatty acid composition are required for CR-induced changes in mitochondrial and plasma membrane functions. Specific Aim 3: To determine if decreases in membrane long chain polyunsaturated fatty acids or increases in activity of the plasma membrane redox system are required for life span extension with CR. Genetic (fat-1 mice) and dietary interventions will be used to determine if CR-induced changes in n-3 fatty acids, linoleic acid, or membrane saturation are required for life span extension. Also, NAD(P)H-quinone reductase knockout (NQO1 KO) mice will be used to determine if stimulation of the PM redox system is required for life span extension with CR.
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Mitochondrial permeabilization without caspase activation mediates the increase of basal apoptosis in cells lacking Nrf2.
没有 caspase 激活的线粒体通透介导缺乏 Nrf2 的细胞基础细胞凋亡的增加。
DOI:
10.1016/j.freeradbiomed.2016.03.015
发表时间:
2016-06
期刊:
Free radical biology & medicine
影响因子:
7.4
作者:
[Ariza J, González-Reyes JA, Jódar L, Díaz-Ruiz A, de Cabo R, Villalba JM]
通讯作者:
Villalba JM
Resveratrol in cancer: cellular and mitochondrial consequences of proton transport inhibition.
癌症中的白藜芦醇:质子运输抑制的细胞和线粒体后果。
DOI:
10.2174/138161212799504849
发表时间:
2012
期刊:
Current pharmaceutical design
影响因子:
3.1
作者:
[Lopez-Lluch,Guillermo, Cruz-Calvo,SaraSanta, Navas,Placido]
通讯作者:
Navas,Placido
DOI:
10.1111/acel.12451
发表时间:
2016-06
期刊:
Aging cell
影响因子:
7.8
作者:
[Calvo-Rubio M, Burón MI, López-Lluch G, Navas P, de Cabo R, Ramsey JJ, Villalba JM, González-Reyes JA]
通讯作者:
González-Reyes JA
Omega-3 fatty acids partially revert the metabolic gene expression profile induced by long-term calorie restriction.
Omega-3 脂肪酸可部分恢复长期热量限制诱导的代谢基因表达谱。
DOI:
10.1016/j.exger.2016.02.002
发表时间:
2016
期刊:
Experimental gerontology
影响因子:
3.9
作者:
[López-Domínguez,JoséAlberto, Cánovas,Ángela, Medrano,JuanF, Islas-Trejo,Alma, Kim,Kyoungmi, Taylor,SandraL, Villalba,JoséManuel, López-Lluch,Guillermo, Navas,Plácido, Ramsey,JonJ]
通讯作者:
Ramsey,JonJ
Calorie restriction modifies ubiquinone and COQ transcript levels in mouse tissues.
热量限制会改变小鼠组织中的泛醌和 COQ 转录水平。
DOI:
10.1016/j.freeradbiomed.2011.03.024
发表时间:
2011
期刊:
Free radical biology & medicine
影响因子:
7.4
作者:
[Parrado-Fernández,Cristina, López-Lluch,Guillermo, Rodríguez-Bies,Elisabet, Santa-Cruz,Sara, Navas,Plácido, Ramsey,JonJ, Villalba,JoséM]
通讯作者:
Villalba,JoséM
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Alterations in membrane composition and function eith calorie restriction
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Alterations in membrane composition and function eith calorie restriction
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