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E-GEOD-26874 GSE26874 transcription profiling by array Mus musculus

Suppression of Lung Adenocarcinoma Progression by Nkx2-1

·发布 2011年1月27日 ·更新 2013年1月27日
29
样本数
29
实验数
1
芯片平台
1
相关文献
实验描述

Despite the high prevalence and poor outcome of patients with metastatic lung cancer, the mechanisms of tumour progression and metastasis remain largely uncharacterized. We modelled human lung adenocarcinoma, which frequently harbours activating point mutations in KRAS1 and inactivation of the p53-pathway2, using conditional alleles in mice3-5. Lentiviral-mediated somatic activation of oncogenic Kras and deletion of p53 in the lung epithelial cells of KrasLSL-G12D/+;p53flox/flox mice initiates lung adenocarcinoma development4. Although tumours are initiated synchronously by defined genetic alterations, only a subset become malignant, suggesting that disease progression requires additional alterations. Identification of the lentiviral integration sites allowed us to distinguish metastatic from non-metastatic tumours and determine the gene expression alterations that distinguish these tumour types. Cross-species analysis identified the NK-2 related homeobox transcription factor Nkx2-1 (Ttf-1/Titf1) as a candidate suppressor of malignant progression. In this mouse model, Nkx2-1-negativity is pathognomonic of high-grade poorly differentiated tumours. Gain- and loss-of-function experiments in cells derived from metastatic and non-metastatic tumours demonstrated that Nkx2-1 controls tumour differentiation and limits metastatic potential in vivo. Interrogation of Nkx2-1 regulated genes, analysis of tumours at defined developmental stages, and functional complementation experiments indicate that Nkx2-1 constrains tumours in part by repressing the embryonically-restricted chromatin regulator Hmga2. While focal amplification of NKX2-1 in a fraction of human lung adenocarcinomas has focused attention on its oncogenic function6-9, our data specifically link Nkx2-1 downregulation to loss of differentiation, enhanced tumour seeding ability, and increased metastatic proclivity. Thus, the oncogenic and suppressive functions of Nkx2-1 in the same tumour type substantiate its role as a dual function lineage factor. 23 cell lines derived from primary tumor or metastasis. 6 samples analyzed to determine the effect of Nkx2-1 knockdown on gene expression

参考文献
Suppression of lung adenocarcinoma progression by Nkx2-1.
Winslow MM, Dayton TL, Verhaak RG, Kim-Kiselak C, Snyder EL, Feldser DM, Hubbard DD, DuPage MJ, Whittaker CA, Hoersch S, Yoon S, Crowley D, Bronson RT, Chiang DY, Meyerson M, Jacks T
PMID: 21471965
芯片平台
A-AFFY-98
Affymetrix GeneChip Mouse Exon 1.0 ST Array [MoEx-1_0-st-v1](29 例)
样本属性
cell type
lung adenocarcinoma control infected tumor derived cell line, lung adenocarcinoma metastasis derived cell line (from kidney metastasis), lung adenocarcinoma metastasis derived cell line (from liver metastasis), lung adenocarcinoma metastasis derived cell line (from lymph node metastasis), lung adenocarcinoma metastasis derived cell line (from pleural fluid), lung adenocarcinoma primary tumor derived cell line, lung adenocarcinoma shNkx2-1 infected tumor derived cell line
genotype
KrasG12D;p53-/-
Organism
Mus musculus
实验信息
登记号
E-GEOD-26874
GEO 编号
GSE26874
实验类型
transcription profiling by array
物种
Mus musculus
发布日期
2011年1月27日
更新日期
2013年1月27日
提交者
Denise Crowley、 David M Feldser、 Diana D Hubbard、 Talya L Dayton、 Eric L Snyder、 Matthew Meyerson、 Michel J DuPage、 Sebastian Hoersch、 Caroline Kim-Kiselak、 Derek Y Chiang、 Roderick T Bronson、 Charles A Whittaker、 Roel G Verhaak、 Charles Arthur Whittaker、 Stephanie Yoon、 Monte M Winslow、 Tyler Jacks
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