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Expression profiles and clinical relationships of ID2, CDKN1B, and CDKN2A in primary neuroblastoma
Sigrun Gebauer1, Alice L Yu, Motoko Omura-Minamisawa
1Division of Pediatric Hematology/Oncology, UCSD Medical Center, 200 West Arbor Drive, San Diego, CA 92103-8447, USA.
Abstract:
Despite considerable research into the etiology of neuroblastoma, the molecular basis of this disease has remained elusive. In contrast to the absence of expression of the known tumor suppressor CDKN2A (also known as p16 and INK4A) in a wide variety of tumor types we have found in previous studies that CDKN2A protein is paradoxically highly expressed in many advanced stage neuroblastomas and unrelated to RB1 status. In the present study, we sought to identify the mechanistic relationships that might influence CDKN2A expression and negate its influence on tumor cell proliferation. In this regard, we examined the role of the tumor-suppressor gene CDKN1B (also known as p27 and Kip1) and the oncogene ID2 in relationship to CDKN2A expression, MYCN amplification, and neuroblastoma pathogenesis in 17 neuroblastoma cell lines and 129 samples of primary tumors of all stages. All neuroblastoma cell lines expressed the ID2 transcript and protein. However, although the majority of primary neuroblastomas also expressed the ID2 transcript, expression of the ID2 protein was undetectable or only barely detectable, regardless of transcript expression. In both cell lines and primary tumors, ID2 expression was independent of both CDKN2A and MYCN expression. In primary neuroblastomas, CDKN1B protein was expressed in significantly fewer advanced-stage neuroblastomas than early-stage neuroblastomas, but its expression had no relationship with CDKN2A expression or MYCN amplification. We concluded that the paradoxical expression of CDKN2A in neuroblastoma cannot be explained by inactivation of the tumor-suppressor gene CDKN1B or overexpression of the oncogene ID2. We further concluded that ID2 is not a target of MYCN regulation nor is it a prognostic factor for neuroblastoma. Finally, the loss of CDKN1B in advanced-stage neuroblastoma suggests this protein may play a role in the neuroblastoma disease process.
Insights
The tumor suppressor CDKN2A is paradoxically highly expressed in advanced neuroblastoma. This study found that the tumor suppressor CDKN1B and oncogene ID2 do not explain this expression, suggesting CDKN1B loss may impact disease progression.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Neuroblastoma's molecular basis remains unclear despite extensive research.
- The tumor suppressor CDKN2A (p16/INK4A) is paradoxically highly expressed in advanced neuroblastoma, contrary to its absence in other tumors.
- The role of CDKN1B (p27/Kip1) and ID2 in CDKN2A regulation and neuroblastoma pathogenesis requires investigation.
Purpose of the Study:
- To investigate the mechanistic relationships influencing CDKN2A expression in neuroblastoma.
- To examine the roles of tumor suppressor CDKN1B and oncogene ID2 in relation to CDKN2A, MYCN amplification, and neuroblastoma.
- To determine if ID2 is regulated by MYCN or serves as a prognostic factor.
Main Methods:
- Analysis of CDKN2A, CDKN1B, and ID2 expression in 17 neuroblastoma cell lines and 129 primary tumor samples.
- Assessment of ID2 transcript and protein levels.
- Correlation of ID2 and CDKN1B expression with CDKN2A expression, MYCN amplification, and tumor stage.
Main Results:
- All cell lines expressed ID2 transcript and protein; primary tumors showed variable ID2 transcript but minimal protein expression.
- ID2 expression was independent of CDKN2A and MYCN.
- CDKN1B protein was significantly decreased in advanced-stage neuroblastomas but showed no correlation with CDKN2A or MYCN.
Conclusions:
- The paradoxical high expression of CDKN2A in neuroblastoma is not explained by CDKN1B inactivation or ID2 overexpression.
- ID2 is not regulated by MYCN and is not a prognostic factor in neuroblastoma.
- Loss of CDKN1B in advanced-stage neuroblastoma suggests a potential role in disease progression.