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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.
Abstract:
Removal of nuclei in lens fiber cells is required for organelle-free zone (OFZ) formation during lens development. Defect in degradation of nuclear DNA leads to cataract formation. DNase2β degrades nuclear DNA of lens fiber cells during lens differentiation in mouse. Hsf4 is the principal heat shock transcription factor in lens and facilitates the lens differentiation. Knockout of Hsf4 in mouse and zebrafish resulted in lens developmental defect that was characterized by retaining of nuclei in lens fiber cells. In previous in vitro studies, we found that Hsf4 promoted DNase2β expression in human and mouse lens epithelial cells. In this study, it was found that, instead of DNase2β, DNase1l1l is uniquely expressed in zebrafish lens and was absent in Hsf4-/- zebrafish lens. Using CRISPR-Cas9 technology, a DNase1l1l knockout zebrafish line was constructed, which developed cataract. Deletion of DNase1l1l totally abrogated lens primary and secondary fiber cell denucleation process, whereas had little effect on the clearance of other organelles. The transcriptional regulation of DNase1l1l was dramatically impaired in Hsf4-/- zebrafish lens. Rescue of DNase1l1l mRNA into Hsf4-/- zebrafish embryos alleviated its defect in lens fiber cell denucleation. Our results in vivo demonstrated that DNase1l1l is the primary DNase responsible for nuclear DNA degradation in lens fiber cells, and Hsf4 can transcriptionally activate DNase1l1l expression in zebrafish.
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.

