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Updated: Feb 2, 2026

An Orthotopic Murine Model of Human Prostate Cancer Metastasis
Published on: September 18, 2013
Downregulation of IQGAP2 Correlates with Prostate Cancer Recurrence and Metastasis
Yanyun Xie1, Linfeng Zheng1, Lijian Tao1
1Division of Nephrology, Xiangya Hospital, Central South University, Hunan, Changsha, China.
Abstract:
IQGAP2 was recently reported as a tumor suppressor of prostate cancer (PC). Nonetheless, its clinical implications remain unknown. To address this issue, we extracted data related to IQGAP2 mRNA expression and genomic alterations from multiple large datasets within the Oncomine and cBioPortal databases and performed in silico analyses to determine a potential association of IQGAP2 mRNA expression and its genomic alterations with PC progression. In 4 cohorts consisting of 118 normal prostate tissues and 277 PCs, IQGAP2 mRNA expression was significantly elevated particularly in low-grade (primary Gleason score ≤3) PCs; these changes separate PC from normal tissues with area under curve values of 0.7-0.8. Significant reductions in IQGAP2 mRNA levels and gene copy number occurred in more than 70 metastases compared to at least 230 local PCs. This duo-alteration in IQGAP2 expression supports IQGAP2 elevation suppressing and its downregulation facilitating PC progression. Deletion and missense mutations were detected in 23 of 492 primary PCs; these alterations significantly associate with PC recurrence (HR=2.71; 95% CI: 1.35-5.44; P=.005) after adjusting for known risk factors and correlate with reductions in disease-free survival (DFS, P=.002). IQGAP2 (5q13.3) genomic alterations were observed in SPOP-marked PCs and co-occurred with deletion in the RN7SK (16p12.2), SNORA50A (16q21), and SNORA50C (17q23.3) genes; the co-occurrence associated with reductions in DFS (P=4.14e-4). In two independent PC populations, MSKCC (n=130) and TCGA provisional (n=490), reductions in IQGAP2 mRNA expression were significantly associated with DFS. Collectively, this investigation reveals an association of IQGAP2 with PC progression.
Insights
IQGAP2 acts as a tumor suppressor in prostate cancer (PC). Its reduced expression and genomic alterations are linked to PC progression and recurrence, impacting disease-free survival.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- IQGAP2 is a recently identified tumor suppressor in prostate cancer (PC).
- The clinical significance and role of IQGAP2 in PC progression are not fully understood.
Purpose of the Study:
- To investigate the association between IQGAP2 mRNA expression, genomic alterations, and prostate cancer progression.
- To determine the clinical implications of IQGAP2 in PC development and recurrence.
Main Methods:
- Utilized in silico analyses of large datasets from Oncomine and cBioPortal.
- Examined IQGAP2 mRNA expression and genomic alterations (copy number, mutations) in normal prostate tissues and PC cohorts.
- Correlated IQGAP2 alterations with clinicopathological features, including Gleason score, metastasis, and disease-free survival (DFS).
Main Results:
- IQGAP2 mRNA expression was elevated in low-grade PCs but reduced in metastatic PC.
- Genomic alterations (deletion, missense mutations) in IQGAP2 were associated with increased PC recurrence and reduced DFS.
- Co-occurrence of IQGAP2 alterations with other gene deletions correlated with decreased DFS.
- Reduced IQGAP2 mRNA expression independently predicted poorer DFS in independent PC cohorts.
Conclusions:
- IQGAP2 functions as a tumor suppressor in prostate cancer.
- IQGAP2 downregulation and genomic alterations are significant indicators of PC progression and recurrence.
- IQGAP2 serves as a potential prognostic biomarker for prostate cancer patients.
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