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Updated: Jul 1, 2026

Assessment of Zebrafish Lens Nucleus Localization and Sutural Integrity
Published on: May 6, 2019
Dominant inhibition of lens placode formation in mice
Yan Zhang1, Daniel Burgess, Paul A Overbeek
1Department of Surgery, 254 Criss III, 2500 California Plaza, Creighton University, Omaha, NE 68178, USA.
Abstract:
The lens in the vertebrate eye has been shown to be critical for proper differentiation of the surrounding ocular tissues including the cornea, iris and ciliary body. In mice, previous investigators have assayed the consequences of molecular ablation of the lens. However, in these studies, lens ablation was initiated (and completed) after the cornea, retina, iris and ciliary body had initiated their differentiation programs thereby precluding analysis of the early role of the lens in fate determination of these tissues. In the present study, we have ablated the lens precursor cells of the surface ectoderm by generation of transgenic mice that express an attenuated version of diphtheria toxin (Tox176) linked to a modified Pax6 promoter that is active in the lens ectodermal precursors. In these mice, lens precursor cells fail to express Sox2, Prox1 and alphaA-crystallin and die before the formation of a lens placode. The Tox176 mice also showed profound alterations in the corneal differentiation program. The corneal epithelium displayed histological features of the skin, and expressed markers of skin differentiation such as Keratin 1 and 10 instead of Keratin 12, a marker of corneal epithelial differentiation. In the Tox176 mice, in the absence of the lens, extensive folding of the retina was seen. However, differentiation of the major cell types in the retina including the ganglion, amacrine, bipolar and horizontal cells was not affected. Unexpectedly, ectopic placement of the retinal pigmented epithelium was seen between the folds of the retina. Initial specification of the presumptive ciliary body and iris at the anterior margins of the retina was not altered in the Tox176 mice but their subsequent differentiation was blocked. Lacrimal and Harderian glands, which are derived from the Pax6-expressing surface ectodermal precursors, also failed to differentiate. These results suggest that, in mice, specification of the retina, ciliary body and iris occurs at the very outset of eye development and independent of the lens. In addition, our results also suggest that the lens cells of the surface ectoderm may be critical for the proper differentiation of the corneal epithelium.
Insights
Early lens development is crucial for cornea differentiation but not retina or iris/ciliary body specification in mice. Lens ablation in transgenic mice revealed the lens
Area of Science:
- Developmental biology
- Ophthalmology
- Genetics
Background:
- The vertebrate eye lens is essential for differentiating ocular tissues like the cornea, iris, and ciliary body.
- Previous studies on lens ablation in mice occurred after key ocular tissue differentiation initiated, limiting analysis of the lens' early role.
Purpose of the Study:
- To investigate the early role of lens precursor cells in the differentiation of ocular tissues.
- To analyze the consequences of ablating lens precursor cells before lens placode formation.
Main Methods:
- Generation of transgenic mice expressing an attenuated diphtheria toxin (Tox176) under a modified Pax6 promoter.
- The promoter targets lens ectodermal precursors, leading to their ablation before lens placode formation.
- Histological and molecular analyses were performed on the generated Tox176 mice.
Main Results:
- Lens precursor cell ablation resulted in failure to express key lens markers (Sox2, Prox1, alphaA-crystallin) and cell death.
- Tox176 mice exhibited profound corneal differentiation defects, with corneal epithelium showing skin-like histology and markers.
- Retina differentiation was unaffected, but extensive folding and ectopic retinal pigmented epithelium were observed.
- Iris and ciliary body specification occurred independently of the lens, but their subsequent differentiation was blocked.
- Lacrimal and Harderian glands also failed to differentiate in Tox176 mice.
Conclusions:
- Retina, ciliary body, and iris specification occur early in eye development and are independent of the lens.
- Lens cells are critical for the proper differentiation of the corneal epithelium.
- The lens plays a crucial role in the differentiation of ocular adnexa like lacrimal and Harderian glands.
