R-RAS2 overexpression in tumors of the human central nervous system
Sylvia Gutierrez-Erlandsson, Pedro Herrero-Vidal, Marcos Fernandez-Alfara
1Centro de Biología Molecular Severo Ochoa, Departamento de Biología Molecular, Universidad Autónoma de Madrid, Madrid 28049, Spain. bcubelos@cbm.uam.es.
Abstract:
Malignant tumors of the central nervous system (CNS) are the 10th most frequent cause of cancer mortality. Despite the strong malignancy of some such tumors, oncogenic mutations are rarely found in classic members of the RAS family of small GTPases. This raises the question as to whether other RAS family members may be affected in CNS tumors, excessively activating RAS pathways. The RAS-related subfamily of GTPases is that which is most closely related to classical Ras and it currently contains 3 members: RRAS, RRAS2 and RRAS3. While R-RAS and R-RAS2 are expressed ubiquitously, R-RAS3 expression is restricted to the CNS. Significantly, both wild type and mutated RRAS2 (also known as TC21) are overexpressed in human carcinomas of the oral cavity, esophagus, stomach, skin and breast, as well as in lymphomas. Hence, we analyzed the expression of R-RAS2 mRNA and protein in a wide variety of human CNS tumors and we found the R-RAS2 protein to be overexpressed in all of the 90 CNS cancer samples studied, including glioblastomas, astrocytomas and oligodendrogliomas. However, R-Ras2 was more strongly expressed in low grade (World Health Organization grades I-II) rather than high grade (grades III-IV) tumors, suggesting that R-RAS2 is overexpressed in the early stages of malignancy. Indeed, R-RAS2 overexpression was evident in pre-malignant hyperplasias, both at the mRNA and protein levels. Nevertheless, such dramatic changes in expression were not evident for the other two subfamily members, which implies that RRAS2 is the main factor triggering neural transformation.
Insights
RAS-related GTPase RRAS2 is overexpressed in central nervous system (CNS) tumors, particularly in early stages. This suggests RRAS2 plays a key role in neural transformation and CNS cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Neuroscience
Background:
- Central nervous system (CNS) tumors are a significant cause of cancer mortality.
- Oncogenic mutations are seldom found in classical RAS GTPases within CNS tumors.
- The RAS-related subfamily, including RRAS, RRAS2, and RRAS3, warrants investigation for their role in CNS malignancies.
Purpose of the Study:
- To investigate the expression of RRAS2 in various human CNS tumors.
- To determine if RRAS2 overexpression contributes to the development of CNS cancers.
- To explore the role of RRAS2 in neural transformation.
Main Methods:
- Analysis of RRAS2 messenger RNA (mRNA) and protein expression.
- Examination of 90 human CNS cancer samples, including glioblastomas, astrocytomas, and oligodendrogliomas.
- Assessment of RRAS2 expression in pre-malignant hyperplasias.
Main Results:
- RRAS2 protein was overexpressed in all 90 CNS cancer samples analyzed.
- RRAS2 demonstrated stronger expression in low-grade (WHO grades I-II) CNS tumors compared to high-grade (grades III-IV) tumors.
- Elevated RRAS2 mRNA and protein levels were observed in pre-malignant hyperplasias.
Conclusions:
- RRAS2 is significantly overexpressed in CNS tumors, even in early, pre-malignant stages.
- RRAS2 overexpression appears to be an early event in CNS malignancy, suggesting a role in neural transformation.
- Unlike other RAS-related subfamily members, RRAS2 shows substantial expression changes, implicating it as a key factor in CNS cancer initiation.
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