个性化文献订阅>期刊> Cell
 

Telomerase Reactivation following Telomere Dysfunction Yields Murine Prostate Tumors with Bone Metastases

  作者 Ding, ZH; Wu, CJ; Jaskelioff, M; Ivanova, E; Kost-Alimova, M; Protopopov, A; Chu, GC; Wang, GC; Lu, X; Labrot, ES; Hu, J; Wang, W; Xiao, YH; Zhang, HL; Zhang, JH; Zhang, JF; Gan, BY; Perry, SR; Jiang, S; Li, LR; Horner, JW; Wang, YA; Chin, LD; DePinho, RA  
  选自 期刊  Cell;  卷期  2012年148-5;  页码  896-907  
  关联知识点  
 

[摘要]To determine the role of telomere dysfunction and telomerase reactivation in generating pro-oncogenic genomic events and in carcinoma progression, an inducible telomerase reverse transcriptase (mTert) allele was crossed onto a prostate cancer-prone mouse model null for Pten and p53 tumor suppressors. Constitutive telomerase deficiency and associated telomere dysfunction constrained cancer progression. In contrast, telomerase reactivation in the setting of telomere dysfunction alleviated intratumoral DNA-damage signaling and generated aggressive cancers with rearranged genomes and new tumor biological properties (bone metastases). Comparative oncogenomic analysis revealed numerous recurrent amplifications and deletions of relevance to human prostate cancer. Murine tumors show enrichment of the TGF-beta/SMAD4 network, and genetic validation studies confirmed the cooperative roles of Pten, p53, and Smad4 deficiencies in prostate cancer progression, including skeletal metastases. Thus, telomerase reactivation in tumor cells experiencing telomere dysfunction enables full malignant progression and provides a mechanism for acquisition of cancer-relevant genomic events endowing new tumor biological capabilities.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内