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.

Scientific Reports
|January 19, 2022
PubMed

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.

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