Role of Sphingosine Kinase 1 in the p53-dependent DNA Damage Response
Role of Sphingosine Kinase 1 in the p53-dependent DNA Damage Response
批准号:
7804918
负责人:
Linda A Heffernan-Stroud
金额:
$3.9万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-12-01 至 2012-11-30
关键词:
A MouseAdverse effectsApoptosisApoptoticBreast Cancer CellCancer Cell GrowthCell ProliferationCell SurvivalCellsCellular Stress ResponseCeramidesCessation of lifeDNADNA DamageDactinomycinDevelopmentDown-RegulationEmbryoEnsureEnzymesEquilibriumFibroblastsG-Protein-Coupled ReceptorsGeneticGenotoxic StressGoalsGrowthHumanInvestigationKnockout MiceLeadLeftLipidsMCF7 cellMalignant NeoplasmsMediatingMutatePathway interactionsProcessProtein p53RegulationRoleSPHK1 enzymeSecond Primary CancersSignal TransductionSignaling MoleculeSmall Interfering RNASphingolipidsSphingosineStressTP53 geneTherapeuticTimeUnited StatesWorkangiogenesiscancer typecell growthcopingenvironmental stressorexperiencein vivoinorganic phosphateinterestknock-downmortalitymouse modelnext generationpreventpublic health relevancerepairedresponsesenescencesphingosine 1-phosphatetherapeutic targettumorigenesistumorigenicuncontrolled cell growth
中文摘要
描述(由申请人提供):在任何时候,细胞都需要能够对能够诱导DNA损伤的环境应激源做出反应。有各种保护机制可以确保DNA损伤得到修复,而不会传递给下一代细胞。参与这一过程的关键分子之一是蛋白质p53。当p53状态受损时,细胞无法科普环境压力,DNA受损的细胞复制导致癌症,这是美国第二大死亡原因。我们实验室以前的结果表明,p53信号对DNA损伤的反应可能涉及鞘脂。鞘脂是细胞生长和死亡的重要调节因子。虽然生物活性脂质神经酰胺和鞘氨醇作为促死亡分子,鞘氨醇-1-磷酸(SIP)已被证明刺激增殖和血管生成。调节这些促死亡和促生长分子之间平衡的主要酶是鞘氨醇激酶1(SK 1)。我们的初步结果表明,增加神经酰胺水平和减少鞘氨醇激酶1水平的诱导p53通过DNA损伤。因此,调节生物活性鞘脂水平可能是p53 DNA损伤反应的关键组成部分,这些途径的相互作用值得进一步研究。通过了解这些途径的细节,我们将能够确定治疗目标。 该项目的目标是确定SKI在介导p53依赖性DNA损伤反应中的作用。该项目将利用野生型和p53基因敲除小鼠胚胎成纤维细胞来研究神经鞘脂水平的变化,这些变化依赖于遗传毒性应激对p53的诱导。还将使用小鼠模型来评估这些信号传导机制如何与体内癌症发展相关。本研究的目的是:1)确定遗传毒性应激和p53诱导对SK 1/S1 P通路的影响; 2)确定细胞中p53依赖性SKI降解的机制和表现; 3)评估体内p53通路和SKI/SIP通路之间的联系。该项目代表了实现我们长期目标的一个渐进步骤,即确定鞘脂参与细胞应激反应和生物体癌症发展的机制。
公共卫生相关性:当人类细胞经历过度的压力导致DNA损伤时,p53水平会上升,以防止细胞传递可能导致癌症的受损遗传信息。该项目旨在确定p53如何调节生物活性信号脂质以实现这一功能。这项工作最终可能导致开发出更有效的癌症治疗方法,副作用更小。
英文摘要
DESCRIPTION (provided by applicant): At any time, cells need to be able to respond to environmental stressors that are capable of inducing DNA damage. Various protective mechanisms are in place to ensure that DNA damage is repaired and not passed on to the next generation of cells. One of the key molecules involved in this process is the protein p53. When p53 status is compromised, the cell is left unable to cope with environmental stress and the replication of cells with damaged DNA results in cancer, the second greatest cause of mortality in the United States. Previous results in our lab suggest that p53 signalling, in response to DNA damage, may involve sphingolipids. Sphingolipids are important regulators of cell growth and death. While the bioactive lipids ceramide and sphingosine act as pro-death molecules, sphingoslne-1-phosphate (SIP) has been shown to stimulate proliferation and angiogenesis. The primary enzyme regulating the balance between these prodeath and pro-growth molecules is sphingosine kinase 1 (SK1). Our preliminary results show increased ceramide levels and decreased sphingosine kinase 1 levels in response to the induction of p53 via DNA damage. Thus, regulation of bioactive sphingolipid levels may be a key component in the p53 DNA damage response and the interaction of these pathways warrants further investigation. By understanding the details of these pathways we will be able to identify targets of therapeutic interest. The goal of this project is to determine the role of SKI in mediating the p53-dependent DNA damage response. This project will utilize wild type and p53 knockout mouse embryonic fibroblasts to investigate alterations in sphingolipid levels that are dependent on the induction of p53 by genotoxic stress. A mouse model will also be used to evaluate how these signaling mechanisms pertain to cancer development in vivo. The aims of this study are 1) determine the effects of genotoxic stress and p53 induction on the SK1/S1P pathway; 2) determine the mechanism and manifestations of p53 dependent SKI degradation in the cell; and 3) evaluate the connection between the p53 pathway and SKI/SIP pathway in vivo. This project represents an incremental step in achieving our long-term goal of determining the mechanism of involvement of sphingolipids in the cellular stress response and in organismal cancer development.
PUBLIC HEALTH RELEVANCE: When human cells experience excessive stress that results in damage to their DNA, p53 levels go up to prevent the cell from passing on damaged genetic Information which could lead to cancer. This project seeks to determine how p53 regulates bioactive signalling lipids to achieve this function. This work could eventually lead to the development of more efficient cancer therapeutics with less severe side effects.
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Role of Sphingosine Kinase 1 in the p53-dependent DNA Damage Response
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批准号:7997195
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项目类别:
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资助金额:$3.94万
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财政年份:2009
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负责人:Linda A Heffernan-Stroud
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依托单位:
Role of Sphingosine Kinase 1 in the p53-dependent DNA Damage Response
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批准号:8204515
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项目类别:
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资助金额:$2.65万
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财政年份:2009
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负责人:Linda A Heffernan-Stroud
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依托单位:
海外基金