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Slit-Robo GTPase-Activating Protein 2 as a metastasis suppressor in osteosarcoma
Tracy A Marko1, Ghaidan A Shamsan2, Elizabeth N Edwards1
1University of Minnesota, Masonic Cancer Center Minneapolis, MN, USA.
Abstract:
Osteosarcoma is the most common primary bone tumor, with metastatic disease responsible for most treatment failure and patient death. A forward genetic screen utilizing Sleeping Beauty mutagenesis in mice previously identified potential genetic drivers of osteosarcoma metastasis, including Slit-Robo GTPase-Activating Protein 2 (Srgap2). This study evaluates the potential role of SRGAP2 in metastases-associated properties of osteosarcoma cell lines through Srgap2 knockout via the CRISPR/Cas9 nuclease system and conditional overexpression in the murine osteosarcoma cell lines K12 and K7M2. Proliferation, migration, and anchorage independent growth were evaluated. RNA sequencing and immunohistochemistry of human osteosarcoma tissue samples were used to further evaluate the potential role of the Slit-Robo pathway in osteosarcoma. The effects of Srgap2 expression modulation in the murine OS cell lines support the hypothesis that SRGAP2 may have a role as a suppressor of metastases in osteosarcoma. Additionally, SRGAP2 and other genes in the Slit-Robo pathway have altered transcript levels in a subset of mouse and human osteosarcoma, and SRGAP2 protein expression is reduced or absent in a subset of primary tumor samples. SRGAP2 and other axon guidance proteins likely play a role in osteosarcoma metastasis, with loss of SRGAP2 potentially contributing to a more aggressive phenotype.
Insights
Slit-Robo GTPase-Activating Protein 2 (SRGAP2) may suppress osteosarcoma metastasis. Loss of SRGAP2 in osteosarcoma may lead to a more aggressive cancer, suggesting a role for axon guidance proteins in bone tumor progression.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Osteosarcoma is the most common primary bone cancer.
- Metastasis is a primary cause of treatment failure and mortality in osteosarcoma patients.
Purpose of the Study:
- To investigate the role of Slit-Robo GTPase-Activating Protein 2 (SRGAP2) in osteosarcoma metastasis.
- To evaluate the impact of SRGAP2 expression on osteosarcoma cell proliferation, migration, and anchorage-independent growth.
Main Methods:
- Utilized CRISPR/Cas9 gene editing to knockout Srgap2 in murine osteosarcoma cell lines.
- Employed conditional overexpression of Srgap2 in murine osteosarcoma cell lines.
- Performed RNA sequencing and immunohistochemistry on mouse and human osteosarcoma samples.
Main Results:
- Modulating Srgap2 expression in murine osteosarcoma cell lines suggests SRGAP2 acts as a metastasis suppressor.
- Altered transcript levels of SRGAP2 and other Slit-Robo pathway genes were observed in osteosarcoma.
- Reduced or absent SRGAP2 protein expression was detected in a subset of primary osteosarcoma tumors.
Conclusions:
- SRGAP2 may function as a tumor suppressor in osteosarcoma metastasis.
- The Slit-Robo pathway, including SRGAP2, is implicated in osteosarcoma progression.
- Loss of SRGAP2 could contribute to a more aggressive osteosarcoma phenotype.
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