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Published on: October 27, 2014
Effect of disrupting seven-in-absentia homolog 2 function on lung cancer cell growth
Atique U Ahmed1, Rebecca L Schmidt, Cheol Hong Park
1Departments of Surgery and Biochemistry and Molecular Biology, Mayo Clinic College of Medicine, Rochester, MN 55905, USA.
Background:
Hyperactivated epidermal growth factor receptor (EGFR) and/or RAS signaling drives cellular transformation and tumorigenesis in human lung cancers, but agents that block activated EGFR and RAS signaling have not yet been demonstrated to substantially extend patients' lives. The human homolog of Drosophila seven-in-absentia--SIAH-1 and SIAH-2--are ubiquitin E3 ligases and conserved downstream components of the RAS pathway that are required for mammalian RAS signal transduction. We examined whether inhibiting SIAH-2 function blocks lung cancer growth.
Methods:
The antiproliferative and antitumorigenic effects of lentiviral expression of anti-SIAH-2 molecules (ie, a dominant-negative protease-deficient mutant of SIAH-2 [SIAH-2(PD)] and short hairpin RNA [shRNA]-mediated gene knockdown against SIAH-2) were assayed in normal human lung epithelial BEAS-2B cells and in human lung cancer BZR, A549, H727, and UMC11 cells by measuring cell proliferation rates, by assessing MAPK and other activated downstream components of the RAS pathway by immunoblotting, assessing apoptosis by terminal deoxynucleotidyltransferase-mediated UTP end-labeling (TUNEL) assay, quantifying anchorage-independent cell growth in soft agar, and assessing A549 cell-derived tumor growth in athymic nude mice (groups of 10 mice, with two injections of 1 x 10(6) cells each at the dorsal left and right scapular areas). All statistical tests were two-sided.
Results:
SIAH-2 deficiency in human lung cancer cell lines reduced MAPK signaling and statistically significantly inhibited cell proliferation compared with those in SIAH-proficient cells (P < .001) and increased apoptosis (TUNEL-positive A549 cells 3 days after lentivirus infection: SIAH-2(PD) vs control, 30.1% vs 0.0%, difference = 30.1%, 95% confidence interval [CI] = 23.1% to 37.0%, P < .001; SIAH-2-shRNA#6 vs control shRNA, 27.9% vs 0.0%, difference = 27.9%, 95% CI = 23.1% to 32.6%, P < .001). SIAH-2 deficiency also reduced anchorage-independent growth of A549 cells in soft agar (mean number of colonies: SIAH-2(PD) vs control, 124.7 vs 57.3, difference = 67.3, 95% CI = 49.4 to 85.3, P < .001; shRNA-SIAH-2#6 vs shRNA control: 27.0 vs 119.7, difference = 92.7, 95% CI = 69.8 to 115.5, P < .001), and blocked the growth of A549 cell-derived tumors in nude mice (mean tumor volume on day 36 after A549 cell injection: SIAH-2(PD) infected vs uninfected, 191.0 vs 558.5 mm(3), difference = 367.5 mm(3), 95% CI = 237.6 to 497.4 mm(3), P < .001; SIAH-2(PD) infected vs control infected, 191.0 vs 418.3 mm(3), difference = 227.5 mm(3), 95% CI = 87.4 to 367.1 mm(3), P = .003; mean resected tumor weight: SIAH-2(PD) infected vs uninfected, 0.12 vs 0.48 g, difference = 0.36 g, 95% CI = 0.23 to 0.50 g, P < .001; SIAH-2(PD) infected vs control infected, 0.12 vs 0.29 g, difference = 0.17 g, 95% CI = 0.04 to 0.31 g, P = .016).
Conclusions:
SIAH-2 may be a viable target for novel anti-RAS and anticancer agents aimed at inhibiting EGFR and/or RAS-mediated tumorigenesis.
Insights
Inhibiting SIAH-2 (seven-in-absentia homolog 2) significantly reduced lung cancer cell proliferation and tumor growth by blocking RAS signaling. This suggests SIAH-2 is a potential therapeutic target for lung cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Signaling Pathways
Background:
- Hyperactivated epidermal growth factor receptor (EGFR) and RAS signaling drive lung cancer.
- Current therapies targeting EGFR and RAS have limited impact on patient survival.
- Seven-in-absentia homolog 2 (SIAH-2) is a downstream RAS pathway component crucial for signal transduction.
Purpose of the Study:
- To investigate the role of SIAH-2 in lung cancer growth.
- To determine if inhibiting SIAH-2 function can impede lung tumorigenesis.
Main Methods:
- Assayed antiproliferative and antitumorigenic effects of SIAH-2 inhibition using lentiviral expression of anti-SIAH-2 molecules (dominant-negative mutant SIAH-2(PD) and SIAH-2 shRNA).
- Evaluated effects on cell proliferation, MAPK signaling, apoptosis (TUNEL assay), anchorage-independent growth, and tumor growth in nude mice models.
- Utilized human lung epithelial (BEAS-2B) and lung cancer cell lines (BZR, A549, H727, UMC11).
Main Results:
- SIAH-2 deficiency significantly inhibited lung cancer cell proliferation (P < .001) and increased apoptosis.
- Reduced anchorage-independent growth of A549 cells in soft agar (P < .001).
- Blocked A549 cell-derived tumor growth in nude mice, with significantly smaller tumor volumes and weights in SIAH-2 inhibited groups (P < .001).
Conclusions:
- SIAH-2 plays a critical role in promoting lung cancer cell proliferation and tumorigenesis.
- Inhibiting SIAH-2 function effectively suppresses lung cancer growth.
- SIAH-2 represents a promising molecular target for developing novel anti-RAS and anticancer therapies for lung cancer.
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