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E-GEOD-70262 GSE70262 transcription profiling by array Mus musculus

The impact of P53 loss on transcriptome changes following loss of Apc in the intestine

·发布 2015年6月25日 ·更新 2015年6月26日
12
样本数
12
实验数
1
芯片平台
1
相关文献
实验描述

BACKGROUND: p53 is an important tumor suppressor with a known role in the later stages of colorectal cancer, but its relevance to the early stages of neoplastic initiation remains somewhat unclear. Although p53-dependent regulation of Wnt signalling activity is known to occur, the importance of these regulatory mechanisms during the early stages of intestinal neoplasia has not been demonstrated. METHODS: We have conditionally deleted the Adenomatous Polyposis coli gene (Apc) from the adult murine intestine in wild type and p53 deficient environments and subsequently compared the phenotype and transcriptome profiles in both genotypes. RESULTS: Expression of p53 was shown to be elevated following the conditional deletion of Apc in the adult small intestine. Furthermore, p53 status was shown to impact on the transcription profile observed following Apc loss. A number of key Wnt pathway components and targets were altered in the p53 deficient environment. However, the aberrant phenotype observed following loss of Apc (rapid nuclear localisation of beta-catenin, increased levels of DNA damage, nuclear atypia, perturbed cell death, proliferation, differentiation and migration) was not significantly altered by the absence of p53. CONCLUSION: p53 related feedback mechanisms regulating Wnt signalling activity are present in the intestine, and become activated following loss of Apc. However, the physiological Wnt pathway regulation by p53 appears to be overwhelmed by Apc loss and consequently the activity of these regulatory mechanisms is not sufficient to modulate the immediate phenotypes seen following Apc loss. Thus we are able to provide an explanation to the apparent contradiction that, despite having a Wnt regulatory capacity, p53 loss is not associated with early lesion development. Samples were collected from genetically modified mice. Gene recombination was induced using IP administration of beta-napthoflavone.

参考文献
芯片平台
A-AFFY-45
Affymetrix GeneChip Mouse Genome 430 2.0 [Mouse430_2](12 例)
样本属性
genotype
AhCre-positive (control) P53 null, AhCre-positive APCflox hom, AhCre-positive APCflox hom, P53 null, AhCre-positive control (wild-type)
organism
Mus musculus
organism part
small intestine
protocol
gene recombination induced via IP administration of beta-napthoflavone
实验信息
登记号
E-GEOD-70262
GEO 编号
GSE70262
实验类型
transcription profiling by array
物种
Mus musculus
发布日期
2015年6月25日
更新日期
2015年6月26日
提交者
Alan Clarke、 Owen Sansom、 Karen Ruth Reed、 Karen Reed
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