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Published on: May 17, 2016
Identification of a novel c-Myc protein interactor, JPO2, with transforming activity in medulloblastoma cells
Annie Huang1, Cynthia S W Ho, Romina Ponzielli
1Cancer Research Program, Canada. annie.huang@sickkids.ca
Abstract:
c-myc oncogene activation is critical in the pathogenesis of a spectrum of human malignancies. The c-Myc NH2-terminal domain (MycNTD) is essential for cellular transformation, and mediates critical protein interactions that modulate c-Myc oncogenic properties. In medulloblastoma, the most common malignant pediatric brain tumor, deregulated c-myc expression is linked with poorer disease phenotypes and outcomes. The biological basis for these associations is, however, not well understood. To better understand mechanisms underlying Myc-mediated transformation of medulloblastoma, we sought to identify novel MycNTD protein interactors from a medulloblastoma cell line library using a unique two-hybrid system. We identified a novel MycNTD binding protein, JPO2, which shows nuclear colocalization with c-Myc, and interacts with c-Myc both in vitro and in mammalian cells. In Rat1a transformation assays, JPO2 potentiates c-Myc transforming activity, and can complement a transformation-defective Myc mutant. Immunohistochemical studies indicate tumor-specific JPO2 expression in human medulloblastoma, and an association of JPO2 expression with metastatic tumors. Significantly, JPO2 expression induces colony formation in UW228, a medulloblastoma cell line, whereas RNAi-mediated JPO2 knockdown impairs colony formation in UW228, and in Myc-transformed UW228 cells. These data provide evidence for biochemical and functional interaction between c-Myc and JPO2 in medulloblastoma transformation. JPO2 is closely related to JPO1, a Myc transcriptional target with transforming activity. As tumor-specific JPO1 expression in human and murine medulloblastoma has also been reported; these collective observations suggest important functional links between the novel JPO protein family and c-Myc in medulloblastoma transformation.
Insights
We identified JPO2 as a novel protein that interacts with c-Myc, enhancing its transforming activity in medulloblastoma. JPO2 expression is tumor-specific and linked to metastasis, suggesting a role in pediatric brain tumor progression.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- c-Myc oncogene activation is crucial in human cancer development.
- In medulloblastoma, deregulated c-myc expression correlates with poor prognosis.
- The precise mechanisms of c-Myc's role in medulloblastoma are not fully understood.
Purpose of the Study:
- To identify novel c-Myc interacting proteins in medulloblastoma.
- To elucidate the functional role of these interactions in tumor transformation.
- To investigate the clinical relevance of identified interactors in medulloblastoma.
Main Methods:
- Utilized a unique two-hybrid system to screen for MycNTD interactors in a medulloblastoma cell line.
- Performed in vitro and mammalian cell interaction assays.
- Conducted Rat1a transformation assays, immunohistochemistry, and RNA interference (RNAi) studies.
Main Results:
- Identified JPO2 as a novel MycNTD binding protein that colocalizes with c-Myc.
- Demonstrated that JPO2 potentiates c-Myc transforming activity and complements Myc mutants.
- Found tumor-specific JPO2 expression in medulloblastoma, associated with metastatic disease and promoting colony formation.
Conclusions:
- Established a biochemical and functional interaction between c-Myc and JPO2 in medulloblastoma transformation.
- Suggests JPO2, and potentially the JPO protein family, plays a significant role in c-Myc-driven medulloblastoma.
- Highlights JPO2 as a potential therapeutic target in pediatric brain tumors.
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