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Published on: January 7, 2019
Expression profile of the tumor suppressor genes DLC-1 and DLC-2 in solid tumors
Veronika Ullmannova1, Nicholas C Popescu
1Laboratory of Experimental Carcinogenesis, Center for Cancer Research, National Cancer Institute, Bethesda, MD 20892, USA.
Abstract:
Several years after the isolation of deleted in liver cancer 1 (DLC-1), a gene that encodes a Rho GTPase activating protein, the closely related DLC-2 gene was identified. DLC-1 and DLC-2 are approximately 50% identical and share the same SAM-RhoGAP-START domain organization. Since DLC-1 and -2 are located at chromosome regions that are commonly deleted in cancer cells and have been found to function as tumor suppressor genes, we sought to compare their expression profiles in several common types of cancer and to determine whether dlc1 and dlc2 proteins cooperate in tumor development. Using cancer-profiling arrays, we detected for the first time down-regulation of DLC-1 expression in renal, uterine and rectal cancers and down-regulation of DLC-2 expression in lung, ovarian, renal, breast, uterine, gastric, colon and rectal tumors. Since DLC-1 also functions as a metastasis suppressor gene in breast cancer, DLC-1 and DLC-2 expression were examined in a series of primary ductal carcinomas derived from patients with regional lymph node metastases. Using quantitative RT-PCR we detected a significantly lower expression of DLC-1 and DLC-2 in high percentage of tumors, suggesting that deficiency of either DLC gene facilitates dissemination of breast carcinoma cells to secondary sites. We examined DLC-2 expression in DLC-1-negative cell lines derived from human breast, non-small cell lung, and hepatocellular carcinomas, that could be rendered less or non-tumorigenic by ectopic expression of DLC-1. DLC-2 transcripts were detected in all cell lines, indicating that none of the cells were deficient in both members of the DLC family. This comparative expression analysis of DLC-1 and -2 identifies down-regulation of the two emerging bona fide tumor suppressor genes in additional types of solid tumors. The large spectrum of cancers with dysregulated DLC genes underlines the involvement of this family of genes in cancer development.
Insights
The deleted in liver cancer 1 (DLC-1) and DLC-2 genes, known tumor suppressors, show reduced expression in various cancers, including breast cancer metastasis. Their down-regulation suggests a role in tumor development and spread.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- The deleted in liver cancer 1 (DLC-1) and DLC-2 genes encode Rho GTPase activating proteins and are structurally similar.
- Both DLC-1 and DLC-2 are located in chromosomal regions frequently deleted in cancer and function as tumor suppressors.
- Understanding their expression patterns and potential cooperation is crucial for cancer research.
Purpose of the Study:
- To compare the expression profiles of DLC-1 and DLC-2 across multiple common cancer types.
- To investigate whether DLC-1 and DLC-2 proteins cooperate in the development of tumors.
- To determine the role of DLC-1 and DLC-2 in breast cancer metastasis.
Main Methods:
- Cancer-profiling arrays were utilized to assess gene expression.
- Quantitative RT-PCR was employed to analyze DLC-1 and DLC-2 expression in primary breast ductal carcinomas.
- DLC-2 expression was examined in DLC-1-negative cancer cell lines.
Main Results:
- Down-regulation of DLC-1 was observed in renal, uterine, and rectal cancers.
- Down-regulation of DLC-2 was detected in lung, ovarian, renal, breast, uterine, gastric, colon, and rectal tumors.
- Significantly lower expression of both DLC-1 and DLC-2 was found in breast tumors with lymph node metastases, suggesting a role in cancer cell dissemination.
Conclusions:
- The study identifies down-regulation of DLC-1 and DLC-2 in a wide spectrum of solid tumors, reinforcing their role as tumor suppressors.
- The findings suggest that deficiency in either DLC-1 or DLC-2 may facilitate the spread of breast carcinoma cells.
- The DLC gene family is broadly implicated in the development and progression of various cancers.
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