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Published on: June 25, 2014
Mechanism for Src activation by the CCK2 receptor: Patho-physiological functions of this receptor in pancreas
Audrey Ferrand1, Sebastien Vatinel, Aline Kowalski-Chauvel
1INSERM U 531, IFR 31, Institut Louis Bugnard, BP 84225, 31432 Toulouse cedex 4, France.
Aim:
To investigate in vivo, whether CCK2 receptors (CCK2R) regulate proteins known to play a crucial role in cell proliferation and cancer development and analyse in vitro the molecular mechanisms that lead to Src activation; in particular, to identify the domains within the CCK2R sequence that are implicated in this activation.
Methods:
The expression and activation of Src and ERK were studied in vivo using immuno-fluorescence and western-blot techniques. We used pancreatic tissues derived from wild type or Elas-CCK2 mice that expressed the CCK2R in pancreatic acini, displayed an increased pancreatic growth and developed preneoplastic lesions. The pancreatic tumor cell line AR4-2J expressing the endogenous CCK2R or COS-7 cells transiently transfected with wild type or mutant CCK2R were used as in vitro models to study the mechanism of Src activation. Src activation was measured by in vitro kinase assays, ERK activation by western blot using anti-phospho-ERK antibodies and the involvement of Src in gastrin-induced cell proliferation by MTT test.
Results:
We showed in vivo that the targeted CCK2R expression in the pancreas of Elas-CCK2 mice, led to the activation of Src and the ERK pathway. Src was activated upstream of the ERK pathway by the CCK2R in pancreatic tumoral cells and contributed to the proliferative effects mediated by this receptor. In vitro results demonstrated that activation of the Src/ERK pathway by the CCK2R required the NPXXY motif, located within the CCK2R sequence at the end of the 7th transmembrane domain, and suggested the putative role of Gq in this mechanism.
Conclusion:
Deregulation of the Src/ERK pathway by the CCK2R might represent an early step that contributes to cell proliferation, formation of preneoplastic lesions and pancreatic tumor development.
Insights
The cholecystokinin B receptor (CCK2R) activates the Src/ERK pathway, promoting cell proliferation and pancreatic tumor development. This activation requires a specific motif within the CCK2R, suggesting a role in early cancer progression.
Area of Science:
- Gastroenterology and Hepatology
- Oncology
- Molecular Biology
Background:
- The cholecystokinin B receptor (CCK2R) plays a role in cell proliferation and cancer development.
- Understanding the molecular mechanisms linking CCK2R to cancer is crucial for therapeutic strategies.
Purpose of the Study:
- To investigate the in vivo role of CCK2 receptors (CCK2R) in regulating proteins involved in cell proliferation and cancer.
- To analyze the in vitro molecular mechanisms of Src activation by CCK2R, identifying key domains within the receptor sequence.
Main Methods:
- In vivo studies utilized immuno-fluorescence and western-blotting on pancreatic tissues from wild-type and Elas-CCK2 mice.
- In vitro studies employed pancreatic AR4-2J and COS-7 cell lines to investigate Src activation mechanisms.
- Assays included in vitro kinase assays, western blots for ERK activation, and MTT tests for cell proliferation.
Main Results:
- Targeted CCK2R expression in mouse pancreas activated the Src and ERK pathways in vivo.
- CCK2R-mediated Src activation occurred upstream of the ERK pathway and contributed to proliferative effects.
- In vitro, CCK2R-induced Src/ERK activation required the NPXXY motif within the 7th transmembrane domain, with a potential role for Gq.
Conclusions:
- CCK2R-mediated deregulation of the Src/ERK pathway may be an early event in pancreatic tumor development.
- This pathway activation contributes to cell proliferation and the formation of preneoplastic lesions.
- Targeting the CCK2R-Src/ERK axis could offer a therapeutic strategy for pancreatic cancer.
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