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Updated: Oct 6, 2025

Zebrafish Larvae as a Model to Evaluate Potential Radiosensitizers or Protectors
Published on: August 25, 2022
brca2-mutant zebrafish exhibit context- and tissue-dependent alterations in cell phenotypes and response to injury
Vassili A Kouprianov1, Aubrie A Selmek2, Jordan L Ferguson3
1KBI Biopharma, Durham, NC, USA.
Abstract:
Cancer cells frequently co-opt molecular programs that are normally activated in specific contexts, such as embryonic development and the response to injury. Determining the impact of cancer-associated mutations on cellular phenotypes within these discrete contexts can provide new insight into how such mutations lead to dysregulated cell behaviors and subsequent cancer onset. Here we assess the impact of heritable BRCA2 mutation on embryonic development and the injury response using a zebrafish model (Danio rerio). Unlike most mouse models for BRCA2 mutation, brca2-mutant zebrafish are fully viable and thus provide a unique tool for assessing both embryonic and adult phenotypes. We find that maternally provided brca2 is critical for normal oocyte development and embryonic survival in zebrafish, suggesting that embryonic lethality associated with BRCA2 mutation is likely to reflect defects in both meiotic and embryonic developmental programs. On the other hand, we find that adult brca2-mutant zebrafish exhibit aberrant proliferation of several cell types under basal conditions and in response to injury in tissues at high risk for cancer development. These divergent effects exemplify the often-paradoxical outcomes that occur in embryos (embryonic lethality) versus adult animals (cancer predisposition) with mutations in cancer susceptibility genes such as BRCA2. The altered cell behaviors identified in brca2-mutant embryonic and adult tissues, particularly in adult tissues at high risk for cancer, indicate that the effects of BRCA2 mutation on cellular phenotypes are both context- and tissue-dependent.
Insights
BRCA2 mutations impact zebrafish embryonic development and adult tissue repair, leading to embryonic lethality and increased cell proliferation in adult tissues. These findings highlight context-dependent effects of BRCA2 mutations in cancer predisposition.
Area of Science:
- Developmental Biology
- Cancer Biology
- Genetics
Background:
- Cancer cells exploit normal cellular programs for development and injury response.
- Understanding cancer-associated mutations in these contexts is crucial for insights into cancer onset.
- BRCA2 mutations are linked to various cancers, but their context-specific effects require further investigation.
Purpose of the Study:
- To investigate the impact of heritable BRCA2 mutations on embryonic development and injury response in a zebrafish model.
- To elucidate how BRCA2 mutations influence cellular phenotypes in different biological contexts.
Main Methods:
- Utilized a zebrafish (Danio rerio) model with heritable BRCA2 mutations.
- Assessed embryonic phenotypes, including oocyte development and survival.
- Evaluated adult zebrafish phenotypes, focusing on cell proliferation in basal and injury conditions in high-risk tissues.
Main Results:
- Maternally provided BRCA2 is essential for zebrafish oocyte development and embryonic survival.
- BRCA2-mutant zebrafish embryos exhibit lethality, suggesting defects in meiotic and embryonic programs.
- Adult BRCA2-mutant zebrafish show aberrant cell proliferation in basal conditions and after injury, particularly in cancer-prone tissues.
Conclusions:
- BRCA2 mutation effects are context- and tissue-dependent, leading to embryonic lethality and adult cancer predisposition.
- Zebrafish models offer a unique platform to study both embryonic and adult phenotypes of BRCA2 mutations.
- Aberrant cell behaviors in BRCA2-mutant adult tissues highlight mechanisms relevant to cancer development.

