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Updated: Aug 27, 2025

Loss-of-Function Approach in the Embryonic Chick Retina by Using Tol2 Transposon-Mediated Transgenic Expression of Artificial microRNAs
Published on: May 18, 2022
TAK1 inhibition increases proliferation and differentiation of chick retinal cells
Casandra Carrillo1, Vagisha Ravi1, Sarika Tiwari1
1Department of Biology, Indiana University-Purdue University Indianapolis, Indianapolis, IN, United States.
Abstract:
The factors necessary for the differentiation of cell types within the retina are incompletely understood. The transforming growth factor beta (TGF-β) superfamily, including TGF-β1 and 2, the bone morphogenetic proteins, and the activins have all been implicated in differentiation; however, the mechanisms by which these factors affect differentiation are only partially understood. The studies herein focus on a potential role for transforming growth factor β-activated kinase 1 (TAK1), a hub kinase that lies at the intersection of multiple signaling pathways, in the differentiation of cell types within the chick retina. Previous studies have focused predominantly on the role this kinase plays in the inflammation process and axonal growth. TAK1 is downstream of multiple signaling pathways that are critical to development of the central nervous system, including transforming growth factor β (TGFβ), bone morphogenetic proteins (BMPs), and activins. The present study indicates that activated TAK1 is found throughout the developing retina; however, it is localized at higher levels in dividing and differentiating cells. Further, ex ovo retinal studies using TAK1 inhibitor 5Z-7-oxozeaenol increased both progenitor and differentiating cell populations, accompanied by a substantial increase in proliferation and a smaller increase in cell death. These results indicate a unique role for TAK1 in differentiating and proliferating retinal cells.
Insights
Transforming growth factor β-activated kinase 1 (TAK1) plays a key role in retinal cell differentiation. Inhibiting TAK1 in chick retinas increased progenitor and differentiating cells, suggesting TAK1 regulates retinal development.
Area of Science:
- Ophthalmology
- Developmental Biology
- Cell Signaling
Background:
- Retinal cell differentiation mechanisms are not fully understood.
- Transforming growth factor beta (TGF-β) superfamily members are implicated in differentiation.
- Transforming growth factor β-activated kinase 1 (TAK1) is a central kinase in developmental pathways.
Purpose of the Study:
- To investigate the role of TAK1 in chick retinal cell differentiation.
- To understand TAK1's function in proliferating and differentiating retinal cells.
Main Methods:
- Localization studies of activated TAK1 in the developing chick retina.
- Ex ovo retinal explant experiments using the TAK1 inhibitor 5Z-7-oxozeaenol.
Main Results:
- Activated TAK1 is present in the developing retina, with higher levels in dividing and differentiating cells.
- TAK1 inhibition increased progenitor and differentiating cell populations.
- TAK1 inhibition led to increased cell proliferation and a minor increase in cell death.
Conclusions:
- TAK1 plays a significant role in regulating differentiating and proliferating retinal cells.
- TAK1 is a potential therapeutic target for modulating retinal development and regeneration.

