Genetic Analysis of p53 Stability and Activity
Genetic Analysis of p53 Stability and Activity
批准号:
7176126
负责人:
YANG XU
金额:
$26.0万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-02-05 至 2008-01-31
关键词:
AcetylationAddressAllelesAntibodiesApoptosisApoptoticBiological AssayC-terminalCell AgingCell LineCellsCellular StressCodon NucleotidesCollaborationsDNA Binding DomainDNA DamageDataEP300 geneEmbryoEmployee StrikesEventExonsFamilyFibroblastsGeneticGenomeHumanIn VitroKnock-in MouseLaboratoriesMAPK14 geneMalignant NeoplasmsMediatingMissense MutationMonitorMusMutateMutationNumbersPatternPhenotypePhosphorylationPhosphorylation SitePhosphotransferasesPhysiologicalPlayPrincipal InvestigatorProline-Rich DomainProtein KinaseProtein p53Regulatory ElementResearch PersonnelRoleSignal PathwaySignal TransductionStressTP53 geneTechniquesTechnologyTestingTransfectionTumor Cell LineTumor SuppressionTumor Suppressor ProteinsYang Deficiencybasedosageembryonic stem cellgenetic analysishomeodomainhomologous recombinationhuman MAPK14 proteinimmortalized cellin vivomitogen-activated protein kinase p38mouse modelmutantneoplastic cellpromoterresponsethymocytetumortumorigenesis
中文摘要
肿瘤抑制基因p53的改变是人类癌症中最常见的突变。在
对各种胁迫的反应,p53蛋白水平及其活性被极大地诱导。然而,机制
p53对各种应激的反应如何被激活在很大程度上仍不清楚。最近的研究表明
p53的各种磷酸化事件可能调节p53的稳定性和活性。但
p53的这些磷酸化事件在调节p53对DNA损伤的反应中的生理作用,
其他应力仍有待确定。为了解决这个问题,我建议采用同源重组
和LoxP-Cre介导的缺失以在几个位点引入错义突变(Ser/Thr至Ala突变)。
潜在重要的p53磷酸化位点,包括Ser 18和Thr 73/83,进入内源性p53,
小鼠对p53 ser 18 A]a和p53 yhr 73/83 A原代细胞的初步分析表明,p53 ser 18 A] a和p53 yhr 73/83 A] a都是一种细胞因子,
磷酸化事件在调节DNA后p53的稳定性和活性中起重要但独特的作用。
损害在这些p53基因敲入小鼠中,p53对DNA损伤的反应受损的机制以及
将确定这些突变对p53依赖性肿瘤抑制的影响。此外,本发明还提供了一种方法,
采用同样的方法,我们将确定潜在的功能冗余之间
P53在Ser 18和Ser 23处的磷酸化在调节P53对DNA损伤的反应中的作用。磷酸化
人p53丝氨酸46位在调节p53凋亡功能中具有重要作用。但是,在这方面,
人p53的Ser 46在小鼠p53中不保守。因此,人p53基因敲入小鼠模型,其中
将小鼠p53基因的外显子4 - 9替换为人p53基因的外显子4 -9,将用于解决
这种磷酸化事件的生理作用。有两项意见表明了这一战略的可行性。
首先,人源化p53在功能上等同于内源性小鼠p53。第二,DNA
导致人p53丝氨酸46位磷酸化的损伤诱导的信号通路在哺乳动物中是保守的。
小鼠细胞。鉴定调节p53稳定性和活性的磷酸化事件将表明
参与的信号通路,从而揭示了p53反应如何被激活,
各种压力或细胞衰老。
英文摘要
Alterations of the tumor suppressor p53 are the most commonly identified mutations in human cancers. In
responses to various stresses, p53 protein level and its activity are greatly induced. However, the mechanism
how p53 responses to various stresses are activated largely remains unclear. Recent studies have suggested
that various phosphorylation events of p53 might regulate p53 stability and activity. However, the
physiological roles of these phosphorylation events of p53 in regulating p53 responses to DNA damage and
other stresses remain to be determined. To address this issue, I propose to employ homologous recombination
and LoxP-Cre-mediated deletion to introduce missense mutations (Ser/Thr to Ala mutation) at several
potentially important p53 phosphorylation sites, including Serl 8 and Thr73/83, into the endogenous p53 in
mice. Preliminary analysis of the p53 serl8A]a and p53 yhr73/83Alaprimary cells suggested that both
phosphorylation events play important but distinct roles in regulating p53 stability and activity after DNA
damage. The mechanism for the impaired p53 responses to DNA damage in these p53 knock-in mice and the
effects of these mutations on the p53-dependent tumor suppression will be determined. In addition,
employing the same approach, we will determine the potential functional redundancy between
phosphorylation of p53 at Serl 8 and ser23 in regulating p53 responses to DNA damage. Phosphorylation of
human p53 at Ser46 has been suggested an important role in regulating p53 apoptotic function. However,
Ser46 of human p53 is not conserved in mouse p53. Therefore, a human p53 knock-in mouse model, in which
exons 4-9 of mouse p53 gene was replaced with exons 4-9 of human p53 gene, will be used to address the
physiological roles of this phosphorylation event. Two observations indicated the feasibility of this strategy.
First, the humanized p53 is functionally equivalent to the endogenous mouse p53. Secondly, the DNA
damage-induced signaling pathways leading to the phosphorylation of human p53 at Ser46 is conserved in
mouse cells. Identification of the phosphorylation events that regulate p53 stability and activity will indicate
the signaling pathways involved and thus reveal the mechanism how p53 responses are activated during
various stresses or cellular senescence.
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