P2-03-05: Attenuation of TGF-beta Signaling Suppresses Premature Senescence in a p21-Dependent Manner and Promotes Oncogenic ras-Mediated Metastatic Transformation in hTERT-Immortalized Basal-Like Human Mammary Epithelial Cells.

Author(s):  
S Lin ◽  
J Yang ◽  
AG Elkahloun ◽  
A Bandyopadhyay ◽  
L Wang ◽  
...  
2012 ◽  
Vol 23 (8) ◽  
pp. 1569-1581 ◽  
Author(s):  
Shu Lin ◽  
Junhua Yang ◽  
Abdel G. Elkahloun ◽  
Abhik Bandyopadhyay ◽  
Long Wang ◽  
...  

The molecular mechanisms that drive triple-negative, basal-like breast cancer progression are elusive. Few molecular targets have been identified for the prevention or treatment of this disease. Here we developed a series of isogenic basal-like human mammary epithelial cells (HMECs) with altered transforming growth factor-β (TGF-β) sensitivity and different malignancy, resembling a full spectrum of basal-like breast carcinogenesis, and determined the molecular mechanisms that contribute to oncogene-induced transformation of basal-like HMECs when TGF-β signaling is attenuated. We found that expression of a dominant-negative type II receptor (DNRII) of TGF-β abrogated autocrine TGF-β signaling in telomerase-immortalized HMECs and suppressed H-Ras-V12–induced senescence-like growth arrest (SLGA). Furthermore, coexpression of DNRII and H-Ras-V12 rendered HMECs highly tumorigenic and metastatic in vivo in comparison with H-Ras-V12–transformed HMECs that spontaneously escaped H-Ras-V12–induced SLGA. Microarray analysis revealed that p21 was the major player mediating Ras-induced SLGA, and attenuated or loss of p21 expression contributed to the escape from SLGA when autocrine TGF-β signaling was blocked in HMECs. Furthermore, knockdown of p21 also suppressed H-Ras-V12–induced SLGA. Our results identify that autocrine TGF-β signaling is an integral part of the cellular anti-transformation network by suppressing the expression of a host of genes, including p21-regulated genes, that mediate oncogene-induced transformation in basal-like breast cancer.


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