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CRIF counteracts oncogenic Ras and regulates heterochromatin
Su Jun Lim1, Jinghong Li2, Willis X Li3,4
1Department of Biomedical Genetics, University of Rochester Medical Center, Rochester, NY, 14642, USA.
Abstract:
Oncogenic Ras mutations are prevalent in human cancers, yet the mechanisms by which Ras promotes tumorigenesis remain incompletely understood. In Drosophila, oncogenic Ras (RasV12) induces tissue overgrowth and metastasis, but the cellular restraints it must overcome are unclear. We have identified Drosophila CRIF, the homolog of mammalian CR6-interacting factor 1 (CRIF1), as a modifier of RasV12-induced lethality and RasV12-induced overgrowth and cell proliferation. Knockdown of CRIF exacerbated RasV12 phenotypes, while CRIF overexpression ameliorated them. Further, we found that CRIF was also required for heterochromatin formation, as loss of CRIF suppressed position-effect variegation (PEV) and reduced the levels of Heterochromatin Proteins 1 (HP1) and Histone H3 Lysine 9 trimethylation (H3K9me3). CRIF physically interacted with HP1, suggesting a role in recruiting HP1 to heterochromatin. Notably, CRIF did not regulate HP1 transcription or total protein levels but influenced HP1 localization. Our findings demonstrate that CRIF functions as a tumor suppressor by negatively regulating cell proliferation and maintaining heterochromatin stability. CRIF's interaction with HP1 and its role in heterochromatin regulation suggest a novel mechanism linking heterochromatin to tumor suppression in Ras-driven cancers. These results highlight CRIF as a potential therapeutic target and provide new insights into the interplay between chromatin regulation and oncogenic signaling.
Insights
Drosophila CRIF protein acts as a tumor suppressor by regulating cell proliferation and maintaining heterochromatin stability. It interacts with HP1, offering new insights into Ras-driven cancers and potential therapeutic targets.
Area of Science:
- Cell Biology
- Genetics
- Cancer Research
Background:
- Oncogenic Ras mutations drive human cancers, but tumorigenesis mechanisms are unclear.
- Ras promotes tissue overgrowth and metastasis in Drosophila, but cellular restraints are unknown.
Purpose of the Study:
- Identify novel modifiers of oncogenic Ras (RasV12) in Drosophila.
- Investigate the role of Drosophila CRIF in RasV12-induced phenotypes and heterochromatin formation.
Main Methods:
- Genetic screens in Drosophila to identify modifiers of RasV12.
- Analysis of RasV12-induced lethality, overgrowth, and cell proliferation.
- Assays for heterochromatin formation, including position-effect variegation (PEV), HP1 levels, and H3K9me3.
- Co-immunoprecipitation to assess protein interactions.
Main Results:
- Drosophila CRIF (CR6-interacting factor 1) modifies RasV12 phenotypes; CRIF knockdown exacerbates, while overexpression ameliorates them.
- CRIF is essential for heterochromatin formation, suppressing PEV and reducing HP1 and H3K9me3 levels.
- CRIF physically interacts with HP1, influencing its localization but not transcription or total levels.
Conclusions:
- CRIF acts as a tumor suppressor by inhibiting cell proliferation and maintaining heterochromatin stability.
- CRIF's interaction with HP1 reveals a novel link between heterochromatin regulation and tumor suppression in Ras-driven cancers.
- CRIF represents a potential therapeutic target for Ras-driven cancers, offering new insights into chromatin regulation and oncogenic signaling.
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