Mechanisms of transcriptional repression by p53 during hypoxic stress
Mechanisms of transcriptional repression by p53 during hypoxic stress
批准号:
7276847
负责人:
ADAM J KRIEG
金额:
$5.29万
依托单位:
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:
2007-12-01 至 2010-11-30
关键词:
ApoptosisBindingBiochemicalCancerousCell HypoxiaCellsCellular StressCultured CellsDNA DamageEventFutureGene ExpressionGene Expression RegulationGene TargetingGenesGoalsHypoxiaLeadMediatingMicroarray AnalysisModelingMusMutateMutationNumbersOxygenPathway interactionsProtein p53RepressionSeriesStressTP53 geneTestingTransactivationTranscriptional ActivationTranscriptional RegulationTumor Suppressor GenesWound Healingangiogenesiscancer therapychromatin immunoprecipitationgene repressionmemberneoplastic cellpromoterresearch studyresponsetranscription factortumortumor growthtumor progressiontumorigenesis
中文摘要
描述(由申请人提供):细胞缺氧是一种生理上相关的细胞应激,可触发一系列细胞反应,涉及组织修复、血管生成和肿瘤发生。这种现象的一个主要细胞成分是肿瘤抑制因子p53,它通过缺氧应激得到稳定。与DNA损伤应激期间观察到的反激活现象相反,缺氧似乎具有明显不同的转录调节机制,尽管许多下游细胞效应是相似的。这表明p53可以通过几种不相交的途径介导许多肿瘤抑制功能。本提案的目的是确定p53在缺氧应激下如何抑制肿瘤进展。为了实现这一目标,我们将使用一系列缺氧调节的p53构建体来识别在缺氧期间特异性下调的基因。我们将结合表达微阵列技术和染色质免疫沉淀技术,在细胞培养模型中确定p53抑制的直接靶点。补充小鼠肿瘤研究将用于验证一般和特定基因抑制肿瘤缺氧区肿瘤细胞凋亡的重要性。这些研究将对未来确定p53转录抑制的功能后果的实验至关重要。肿瘤中出现的低氧浓度(缺氧)常常导致更具侵袭性的肿瘤的形成。肿瘤抑制基因p53在缺氧肿瘤中经常发生突变,有助于肿瘤生长的进展。了解p53如何调节缺氧肿瘤中的基因表达,将有助于发现癌症治疗的新途径。
英文摘要
DESCRIPTION (provided by applicant): Cellular hypoxia is a physiologically relevant cellular stress that triggers a host of cellular responses involved in tissue repair, angiogenesis, and tumorigenesis. A major cellular component of this phenomena is the tumor suppressor p53, which is stabilized by hypoxic stress. In contrast to transactivation phenomena observed during DNA damaging stress, hypoxia appears to have a distinctly different mechanism of transcriptional regulation, even though many of the downstream cellular effects are similar. This implies that p53 can mediate a number of its tumor suppressive functions through several non-intersecting pathways. The objective of this proposal is to determine how p53 suppresses tumor progression during hypoxic stress. To achieve this goal we will use a series of hypoxia regulated p53 constructs to identify genes that are specifically downregulated during hypoxia. We will use a combination of expression microarray technology and chromatin immunoprecipitation to identify direct targets of p53 repression in a cell culture model. Complementary mouse tumor studies will be used to verify the importance of general and specific gene repression on tumor cell apoptosis in the hypoxic regions of tumors. These studies will be essential for future experiments defining the functional consequences of transcriptional repression by p53. The low oxygen concentrations (hypoxia) that occur in tumors often lead to the formation of more aggressive tumors. The tumor suppressor gene p53 is frequently mutated in hypoxic tumors, aiding in the progression of tumor growth. Understanding how p53 regulates gene expression in hypoxic tumors will lead to the identification of new pathways to target for cancer therapies.
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