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Published on: September 30, 2015
Inhibition of protein tyrosine kinase activity disrupts early retinal development
Ming Li1, Nataliya A Babenko, Donald S Sakaguchi
1Department of Genetics, Development and Cell Biology, Iowa State University, Ames, IA 50011, USA.
Abstract:
In the present study, we have investigated the role of tyrosine kinase activity during early retinal development in Xenopus laevis. The protein tyrosine kinase (PTK) inhibitors lavendustin A and genistein were used to determine the possible role of tyrosine kinase activity during retinal development in vivo and in vitro. Application of the inhibitors to early embryonic retina disrupted the pattern of lamination in the developing retina. The plexiform layers were severely disorganized or were no longer apparent, and photoreceptor morphogenesis was disrupted. Immunocytochemical analysis verified the presence of focal adhesions in dissociated retinal neuroepithelial cells isolated from St 25 embryos. Application of the PTK inhibitors blocked focal adhesion assembly in these primary cultured cells. To further investigate the regulation of focal adhesions by PTK activity, we examined the effect of lavendustin A on cultured XR1 glial cells. Lavendustin A produced a dose-dependent decrease in the proportion of XR1 cells displaying focal adhesions. Taken together, these results suggest that tyrosine kinase activity is essential for regulating neuroepithelial cell adhesion, migration and morphogenesis during retinal development. Furthermore, the disruption of retinal development may, in part, be due to the inhibition of integrin-mediated signaling.
Insights
Protein tyrosine kinase (PTK) activity is crucial for retinal development in Xenopus laevis. Inhibiting PTK disrupts retinal lamination and photoreceptor formation by affecting cell adhesion and migration.
Area of Science:
- Developmental Biology
- Cell Biology
- Neuroscience
Background:
- Early retinal development involves complex cellular processes like lamination and morphogenesis.
- Tyrosine kinase activity plays a role in various cellular functions, including adhesion and migration.
Purpose of the Study:
- To investigate the role of protein tyrosine kinase (PTK) activity in early retinal development in Xenopus laevis.
- To determine how PTK inhibition affects retinal structure and cell adhesion.
Main Methods:
- Used PTK inhibitors (lavendustin A, genistein) on early embryonic Xenopus laevis retina in vivo and in vitro.
- Performed immunocytochemical analysis on dissociated retinal neuroepithelial cells and cultured XR1 glial cells.
Main Results:
- PTK inhibition disrupted retinal lamination and photoreceptor morphogenesis.
- PTK inhibitors blocked focal adhesion assembly in retinal neuroepithelial cells and XR1 glial cells.
- A dose-dependent decrease in focal adhesions was observed with lavendustin A treatment.
Conclusions:
- Tyrosine kinase activity is essential for regulating neuroepithelial cell adhesion, migration, and morphogenesis during retinal development.
- Disruption of retinal development by PTK inhibitors may involve the inhibition of integrin-mediated signaling.
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