Search bioRxiv⌕ Search

Biology subjects

Lachova, J.

Publications and source records attributed to Lachova, J..

2 recordsLinked to original sources

Pax6 maintains lens epithelial cell identity and coordinates secondary fiber cell differentiation

Pax6 is a crucial regulator of vertebrate eye development, and its loss leads to the failure of lens placode formation. To investigate Pax6 function at successive stages of lens development, we employed the Cre-loxP system in combination with a novel Foxe3-Cre driver, which becomes active after the lens placode stage but prior to the onset of secondary fiber cell differentiation. The Foxe3-Cre enables efficient deletion of Pax6 throughout the entire lens by embryonic day E12.5. Our study shows that Pax6 loss causes a delay in lens differentiation, disrupts the lens epithelium, and produces a smaller lens that remains attached to the cornea, ultimately leading to a rudimentary lens in adulthood. Notably, Foxe3 persisted in the mutant lens epithelium despite Pax6 loss, while apoptosis and aberrant Sox2 upregulation occurred in the epithelium. Combined with the delayed onset of fiber cell differentiation, the abnormal anterior expansion of fiber cell differentiation regulators (c-Maf and Sox1), and the aberrant expression of cyclin D2, these results underscore the essential role of Pax6 in preserving lens epithelial identity and coordinating the transition to secondary fiber cell differentiation.

developmental biology↗

Multiple roles of Pax6 in corneal limbal epithelial cells and maturing epithelial cell adhesion

Mammalian corneal development is a multistep process, including formation of corneal epithelium (CE), endothelium and stroma during embryogenesis followed by postnatal stratification of the epithelial layers, and continuous renewal of the epithelium to replace the most outer corneal cells. Herein we employed Cre-loxP system to conditionally deplete Pax6 proteins in two domains of ocular cells, including the ocular surface epithelium (cornea, limbus and conjunctiva) or postnatal CE, via K14-cre or Aldh3-cre, respectively. Earlier and broader inactivation of Pax6 in the OSE resulted in thickened OSE with CE and limbal cells adopting the conjunctival keratin expression pattern. More restricted depletion of Pax6 in postnatal CE resulted in the abnormal cornea marked by reduced epithelial thickness despite of increased epithelial cell proliferation. Immunofluorescence studies showed loss of Keratin 12, an intermediate filament and diffused expression of adherens junction components, together with reduced tight junction protein, Zonula occludens-1 (ZO-1). Furthermore, expression of Keratin 14, basal cell marker in apical layers, indicates impaired differentiation of corneal epithelial cells. Collectively, our data demonstrate that Pax6 is essential for maintaining proper differentiation and strong intercellular adhesion in postnatal corneal epithelial cells, whereas limbal Pax6 is required for preventing the outgrowth of conjunctival cells to the cornea.

developmental biology↗