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Published on: July 21, 2018
Sprouty-2 regulates oncogenic K-ras in lung development and tumorigenesis
Alice T Shaw1, Alexander Meissner, James A Dowdle
1Center for Cancer Research, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, and Massachusetts General Hospital Cancer Center and Harvard Medical School, Boston 02114, USA.
Abstract:
Somatic activation of Ras occurs frequently in human cancers, including one-third of lung cancers. Activating Ras mutations also occur in the germline, leading to complex developmental syndromes. The precise mechanism by which Ras activation results in human disease is uncertain. Here we describe the phenotype of a mouse engineered to harbor a germline oncogenic K-rasG12D mutation. This mouse exhibits early embryonic lethality due to a placental trophoblast defect. Reconstitution with a wild-type placenta rescues the early lethality, but mutant embryos still succumb to cardiovascular and hematopoietic defects. In addition, mutant embryos demonstrate a profound defect in lung branching morphogenesis associated with striking up-regulation of the Ras/mitogen-activated protein kinase (MAPK) antagonist Sprouty-2 and abnormal localization of MAPK activity within the lung epithelium. This defect can be significantly suppressed by lentiviral short hairpin RNA (shRNA)-mediated knockdown of Sprouty-2 in vivo. Furthermore, in the context of K-rasG12D-mediated lung tumorigenesis, Sprouty-2 is also up-regulated and functions as a tumor suppressor to limit tumor number and overall tumor burden. These findings indicate that in the lung, Sprouty-2 plays a critical role in the regulation of oncogenic K-ras, and implicate counter-regulatory mechanisms in the pathogenesis of Ras-based disease.
Insights
Oncogenic Ras mutations cause developmental defects and cancer. In lung development, Sprouty-2 counteracts Ras signaling, acting as a tumor suppressor and regulating Ras-driven lung tumorigenesis.
Area of Science:
- Molecular Biology
- Developmental Biology
- Cancer Research
Background:
- Somatic Ras mutations are common in cancers, including lung cancer.
- Germline Ras mutations cause developmental syndromes, but disease mechanisms are unclear.
Purpose of the Study:
- To investigate the in vivo role of oncogenic K-rasG12D.
- To elucidate Ras signaling pathways in embryonic development and lung tumorigenesis.
Main Methods:
- Generated a mouse model with a germline oncogenic K-rasG12D mutation.
- Utilized placenta reconstitution, lentiviral short hairpin RNA (shRNA) for Sprouty-2 knockdown.
- Analyzed embryonic lethality, developmental defects, lung branching morphogenesis, and tumor formation.
Main Results:
- K-rasG12D mutation caused embryonic lethality due to placental defects, rescued by wild-type placenta.
- Mutant embryos showed cardiovascular, hematopoietic, and lung branching defects.
- Sprouty-2 upregulation and abnormal MAPK localization were observed in mutant lungs; Sprouty-2 knockdown suppressed lung defects.
- Sprouty-2 acted as a tumor suppressor in K-rasG12D-driven lung tumorigenesis.
Conclusions:
- Sprouty-2 is critical for regulating oncogenic K-ras in the lung.
- Counter-regulatory mechanisms involving Sprouty-2 are implicated in Ras-based diseases.
- This study provides insights into Ras-driven developmental disorders and cancer.
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