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Updated: Apr 21, 2026

Co-immunoprecipitation Assay Using Endogenous Nuclear Proteins from Cells Cultured Under Hypoxic Conditions
Published on: August 2, 2018
Genetic evidence of a precisely tuned dysregulation in the hypoxia signaling pathway during oncogenesis
Sophie Couvé1, Charline Ladroue2, Elodie Laine3
1Laboratoire de Génétique Oncologique de l'Ecole Pratique des Hautes Etudes (EPHE), Villejuif, France. Institut National de la Santé et de la Recherche Medicale (INSERM) U753, Gustave Roussy Cancer Campus, Villejuif, France. Centre Expert National Cancers Rares INCa "PREDIR" and Réseau National INCa "Maladie de VHL et prédispositions au cancer du rein," Service d'Urologie, Assistance publique, Hôpitaux de Paris, Hôpital Bicêtre, Le Kremlin-Bicêtre, France.
Abstract:
The classic model of tumor suppression implies that malignant transformation requires full "two-hit" inactivation of a tumor-suppressor gene. However, more recent work in mice has led to the proposal of a "continuum" model that involves more fluid concepts such as gene dosage-sensitivity and tissue specificity. Mutations in the tumor-suppressor gene von Hippel-Lindau (VHL) are associated with a complex spectrum of conditions. Homozygotes or compound heterozygotes for the R200W germline mutation in VHL have Chuvash polycythemia, whereas heterozygous carriers are free of disease. Individuals with classic, heterozygous VHL mutations have VHL disease and are at high risk of multiple tumors (e.g., CNS hemangioblastomas, pheochromocytoma, and renal cell carcinoma). We report here an atypical family bearing two VHL gene mutations in cis (R200W and R161Q), together with phenotypic analysis, structural modeling, functional, and transcriptomic studies of these mutants in comparison with classical mutants involved in the different VHL phenotypes. We demonstrate that the complex pattern of disease manifestations observed in VHL syndrome is perfectly correlated with a gradient of VHL protein (pVHL) dysfunction in hypoxia signaling pathways. Thus, by studying naturally occurring familial mutations, our work validates in humans the "continuum" model of tumor suppression.
Insights
The continuum model of tumor suppression is validated in humans. Naturally occurring von Hippel-Lindau (VHL) gene mutations show a gradient of VHL protein dysfunction, correlating with disease manifestations.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- The classic tumor suppression model requires two gene hits.
- A proposed "continuum" model incorporates gene dosage and tissue specificity.
- von Hippel-Lindau (VHL) gene mutations cause a spectrum of VHL disease and tumors.
Purpose of the Study:
- To investigate an atypical family with two VHL gene mutations in cis.
- To analyze VHL protein (pVHL) dysfunction in hypoxia signaling.
- To validate the human "continuum" model of tumor suppression.
Main Methods:
- Phenotypic analysis of an atypical family.
- Structural modeling of VHL mutants.
- Functional and transcriptomic studies of VHL mutants.
- Comparison with classical VHL mutants.
Main Results:
- An atypical VHL family presented with two mutations (R200W and R161Q) in cis.
- A gradient of pVHL dysfunction in hypoxia signaling pathways was observed.
- Disease manifestations in VHL syndrome correlated with pVHL dysfunction levels.
Conclusions:
- The study validates the human "continuum" model of tumor suppression.
- pVHL dysfunction gradient explains the complex VHL syndrome manifestations.
- Naturally occurring familial mutations provide insights into tumor suppression mechanisms.
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