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RhoGDI2 antagonizes ovarian carcinoma growth, invasion and metastasis

Authors :
Cercina Onesto
Dominico Vigil
Bentley R. Midkiff
Jamie K. Alan
Ellen V. Stevens
Lee M. Graves
Jinsong Liu
Natalie Banet
Nana Nikolaishvili-Feinberg
Channing J. Der
C. Ryan Miller
Ana Plachco
Pei Fen Kuan
Source :
Small GTPases. 2(4)
Publication Year :
2011

Abstract

Previous studies described functional roles for Rho GDP dissociation inhibitor 2 (RhoGDI2) in bladder, gastric and breast cancers. However, only limited expression and no functional analyses have been done for RhoGDI2 in ovarian cancer. We determined RhoGDI2 protein expression and function in ovarian cancer. First, protein gel blot analysis was performed to determine the expression levels of RhoGDI2 in ovarian cells lines. RhoGDI2 but not RhoGDI1 protein expression levels varied widely in ovarian carcinoma cell lines, with elevated levels seen in Ras-transformed ovarian epithelial cells. Next, immunohistochemistry was performed to detect RhoGDI2 expression in patient samples of ovarian cysts and ovarian cancer with known histological subtype, stage, grade and outcome. RhoGDI2 protein was significantly overexpressed in high-grade compared with low-grade ovarian cancers, correlated with histological subtype, and did not correlate with stage of ovarian cancer nor between carcinomas and benign cysts. Unexpectedly, stable suppression of RhoGDI2 protein expression in HeyA8 ovarian cancer cells increased anchorage-independent growth and Matrigel invasion in vitro and in tail-vein lung colony metastatic growth in vivo. Finally, we found that RhoGDI2 stably-associated preferentially with Rac1 and suppression of RhoGDI2 expression resulted in decreased Rac1 activity and Rac-associated JNK and p38 mitogenactivated protein kinase signaling. RhoGDI2 antagonizes the invasive and metastatic phenotype of HeyA8 ovarian cancer cells. In summary, our results suggest significant cell context differences in RhoGDI2 function in cancer cell growth.

Details

ISSN :
21541256
Volume :
2
Issue :
4
Database :
OpenAIRE
Journal :
Small GTPases
Accession number :
edsair.doi.dedup.....7448661e3924ad838fadf73b82fa4dc1