主页 实验库实验详情
E-GEOD-27656 GSE27656 transcription profiling by array Mus musculus

Either Kras activation or Pten loss similarly enhance the dominant-stable CTNNB1-induced genetic program to promote granulosa cell tumor development in ovary and testis

·发布 2011年9月19日 ·更新 2014年5月3日
4
样本数
4
实验数
1
芯片平台
1
相关文献
实验描述

Stable activation of the WNT signaling effector beta-catenin (CTNNB1(ex3) in ovarian granulosa cells results in the formation of premalignant lesions that develop into granulosa cell tumors (GCTs) spontaneously later in life. Loss of the tumor suppressor gene Pten accelerates GCT formation in the CTNNB1 strain. Conversely, expression of oncogenic KRASG12D causes the dramatic arrest of proliferation, differentiation and apoptosis in granulosa cells, and consequently, small abnormal follicle-like structures devoid of oocytes accumulate in the ovary. Because of the potent anti-proliferative effects of KRASG12D in granulosa cells, we sought to determine if KRASG12D would block precancerous lesion and tumor formation in follicles of the CTNNB1 mutant mice. Unexpectedly, transgenic Ctnnb1;Kras mutant mice developed early-onset GCTs leading to premature death in a manner similar to theCtnnb1;Pten mutant mice. Moreover, the GCTs in the Ctnnb1;Kras mutant mice exhibited increased GC proliferation, decreased apoptosis and impaired differentiation. Microarray and RT-PCR analyses revealed that ovaries from mice expressing dominant-stable CTNNB1 with either Pten loss or KRAS activation were unpredictably similar. Specifically, gene regulatory processes induced by CTNNB1 were mostly enhanced by either KRAS activation or Pten loss in remarkably similar patterns and degree. Furthermore, the concomitant activation of CTNNB1 and KRAS in Sertoli cells resulted in the development of granulosa cell tumors of the testis. RT-PCR studies showed a partial overlap in gene regulatory processes associated with tumor development in the ovary and testis. Together, these results suggest that KRAS activation and Pten loss induce GCT development from premalignant lesions via highly similar molecular mechanisms. four samples: average of two wild type samples (previously submitted as GSM403220 and GSM403221), beta-Catenin constitutively active mutant, beta-Catenin;Pten double mutant, and beta-Catenin;Kras(G12D) double mutant

芯片平台
A-AFFY-45
Affymetrix GeneChip Mouse Genome 430 2.0 [Mouse430_2](4 例)
样本属性
age
26 days, 4 weeks
genotype
Ctnnb1 tm1Mmt /Ctnnb1 tm1Mmt; Tg(CYP19A1-cre)1jri/+ (Ctnnb1;C-cre), Krastm4Tyj/ Krastm4Tyj ; Ctnnb1 tm1Mmt /Ctnnb1 tm1Mmt; Tg(CYP19A1-cre)1jri/+ (Ctnnb1;Kras;C-cre), Ptentm1Hwu/ Ptentm1Hwu; Ctnnb1 tm1Mmt /Ctnnb1 tm1Mmt; Tg(CYP19A1-cre)1jri/+ (Ctnnb1;Pten;C-cre), wild type
Organism
Mus musculus
strain
mixed background (includes C57BL/6)
tissue
whole ovary
实验信息
登记号
E-GEOD-27656
GEO 编号
GSE27656
实验类型
transcription profiling by array
物种
Mus musculus
发布日期
2011年9月19日
更新日期
2014年5月3日
提交者
Marie-Noëlle Laguë、 Lisa K Mullany、 Alexandre Boyer、 Derek Boerboom、 JoAnne S Richards、 Zhilin Liu、 Heng-Yu Fan、 Zhilin Liu
分析服务
分析服务

联系地址

山东省济南市章丘区文博路2号

齐鲁师范学院 genelibs生信实验室

山东省济南市高新区舜华路750号

大学科技园北区F座4单元2楼

电话: 0531-88819269

微信公众号

关注微信订阅号,实时查看信息,关注医学生物学动态。


商务邮箱

E-mail: [email protected]