Knockout of DNase1l1l abrogates lens denucleation process and causes cataract in zebrafish

Jing Zhang1, Wen-Wen Cui1, Chunxiao Du1

  • 1Joint National Laboratory for Antibody Drug Engineering, Henan International Union Lab of Antibody Medicine, Henan University School of Medicine, Kaifeng, China.

Insights

Heat shock factor 4 (Hsf4) is crucial for lens development. In zebrafish, Hsf4 activates DNase1-like 1 (DNase1l1l), an enzyme essential for removing nuclei and preventing cataracts.

Area of Science:

  • Developmental Biology
  • Molecular Biology
  • Ophthalmology

Background:

  • Nuclei removal is vital for lens development and preventing cataracts.
  • Heat shock factor 4 (Hsf4) plays a role in lens differentiation.
  • Previous studies suggested Hsf4 regulates DNase2β in mammals.

Purpose of the Study:

  • Investigate the role of Hsf4 in zebrafish lens development.
  • Identify the specific DNase responsible for nuclear DNA degradation in zebrafish lenses.
  • Elucidate the transcriptional regulation of this DNase by Hsf4.

Main Methods:

  • CRISPR-Cas9 gene editing to create DNase1l1l knockout zebrafish.
  • Comparative analysis of Hsf4 knockout and DNase1l1l knockout zebrafish lenses.
  • mRNA rescue experiments in Hsf4 knockout zebrafish embryos.

Main Results:

  • DNase1-like 1 (DNase1l1l) is uniquely expressed in zebrafish lenses and is regulated by Hsf4.
  • DNase1l1l knockout zebrafish developed cataracts due to failed nuclear DNA degradation.
  • Hsf4 deficiency impaired DNase1l1l expression and led to retained nuclei.
  • DNase1l1l, not DNase2β, is the primary enzyme for nuclear degradation in zebrafish lenses.

Conclusions:

  • DNase1l1l is the key enzyme for nuclear DNA degradation in zebrafish lens fiber cells.
  • Hsf4 transcriptionally activates DNase1l1l expression, essential for lens development and cataract prevention.
  • This study reveals a novel Hsf4-DNase1l1l pathway in zebrafish lens biology.

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