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Published on: July 17, 2019
Cytoplasmic p27 is oncogenic and cooperates with Ras both in vivo and in vitro
M P Serres1, E Zlotek-Zlotkiewicz, C Concha
1Cancer Research Center of Toulouse, France.
Abstract:
p27(Kip1) (p27) can have opposing roles during malignant transformation depending on cellular context: on one hand it functions as a tumor suppressor by inhibiting cyclin-cyclin-dependent kinase (CDK) activity in the nucleus and on the other it may adopt an oncogenic role that is less well understood. To gain further insight into the roles played by p27 during tumorigenesis, we compared the susceptibility with urethane-induced tumorigenesis of two p27 mouse models, p27(-/-) and p27(CK-) knockin, in which p27 cannot bind or inhibit cyclin-CDKs. In this K-Ras-driven tumorigenesis model, p27(CK-) mice had an increase in both tumor number and aggressiveness compared with p27(-/-), indicating a cooperation between p27(CK-) and activated Ras. In the lung, increased tumorigenesis was associated with cytoplasmic localization of p27(CK-) and bronchiolaveolar stem cell amplification. The ability of p27(CK-) to cooperate with other oncogenes was not universal. When c-Myc was used as a transforming agent, p27 status became irrelevant and c-Myc was equally potent in transforming p27(+/+), p27(-/-) and p27(CK-) cells. In fact, c-Myc induced the degradation of wild-type p27 via the Skp-Cullin-F-box (SCF)-Skp2 pathway. In contrast, p27(CK-) levels were not affected by c-Myc expression, as p27(CK-) is insensitive to Skp2-mediated degradation because of its inability to bind cyclin E/CDK2. However, in presence of c-Myc, p27(CK-) remained mostly nuclear, providing an explanation for its inability to cooperate with Myc during transformation. Thus, we propose that the p27(CK-) protein needs to be localized in the cytoplasm in order to function as an oncogene, otherwise it just behaves similar to a null allele.
Insights
The tumor suppressor p27(Kip1) (p27) can promote cancer when in the cytoplasm. Its oncogenic role depends on cellular context and localization, cooperating with Ras but not Myc.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- The protein p27(Kip1) (p27) has dual roles in cancer, acting as a tumor suppressor in the nucleus and potentially as an oncogene in the cytoplasm.
- Understanding the context-dependent functions of p27 is crucial for cancer research.
Purpose of the Study:
- To investigate the oncogenic potential of p27 and its interaction with specific oncogenes during tumorigenesis.
- To compare the roles of nuclear versus cytoplasmic p27 in cancer development.
Main Methods:
- Utilized p27(-/-) and p27(CK-) knockin mouse models to study urethane-induced tumorigenesis.
- Examined the effects of K-Ras and c-Myc oncogenes on tumor development and p27 localization.
Main Results:
- p27(CK-) mice showed increased tumor number and aggressiveness in a K-Ras-driven model, linked to cytoplasmic p27 localization.
- p27(CK-) did not cooperate with c-Myc; c-Myc induced degradation of wild-type p27 but not p27(CK-).
- Cytoplasmic localization of p27(CK-) was essential for its cooperation with oncogenes like Ras.
Conclusions:
- p27(Kip1) can act as an oncogene, but its function is dependent on its subcellular localization.
- Cytoplasmic p27(CK-) cooperates with oncogenic Ras, while nuclear p27(CK-) does not cooperate with c-Myc.
- The findings highlight the context-dependent, dual role of p27 in cancer progression.
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