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Published on: October 27, 2017
Deficiency in Retinal TGFβ Signaling Aggravates Neurodegeneration by Modulating Pro-Apoptotic and MAP Kinase Pathways
Christina B Bielmeier1, Sabrina I Schmitt2, Nikolai Kleefeldt3
1Institute of Anatomy and Cell Biology, Julius-Maximilians-University Wuerzburg, 97070 Wuerzburg, Germany.
Abstract:
Transforming growth factor β (TGFβ) signaling has manifold functions such as regulation of cell growth, differentiation, migration, and apoptosis. Moreover, there is increasing evidence that it also acts in a neuroprotective manner. We recently showed that TGFβ receptor type 2 (Tgfbr2) is upregulated in retinal neurons and Müller cells during retinal degeneration. In this study we investigated if this upregulation of TGFβ signaling would have functional consequences in protecting retinal neurons. To this end, we analyzed the impact of TGFβ signaling on photoreceptor viability using mice with cell type-specific deletion of Tgfbr2 in retinal neurons and Müller cells (Tgfbr2) in combination with a genetic model of photoreceptor degeneration (VPP). We examined retinal morphology and the degree of photoreceptor degeneration, as well as alterations of the retinal transcriptome. In summary, retinal morphology was not altered due to TGFβ signaling deficiency. In contrast, VPP-induced photoreceptor degeneration was drastically exacerbated in double mutant mice (Tgfbr2; VPP) by induction of pro-apoptotic genes and dysregulation of the MAP kinase pathway. Therefore, TGFβ signaling in retinal neurons and Müller cells exhibits a neuroprotective effect and might pose promising therapeutic options to attenuate photoreceptor degeneration in humans.
Insights
Transforming growth factor β (TGFβ) signaling protects retinal neurons. Disrupting TGFβ signaling in retinal cells worsened photoreceptor degeneration, suggesting therapeutic potential for eye diseases.
Area of Science:
- Ophthalmology
- Neuroscience
- Molecular Biology
Background:
- Transforming growth factor β (TGFβ) signaling regulates crucial cellular functions.
- Evidence suggests TGFβ signaling possesses neuroprotective properties.
- TGFβ receptor type 2 (Tgfbr2) is upregulated in retinal cells during degeneration.
Purpose of the Study:
- To investigate the functional consequences of TGFβ signaling in protecting retinal neurons.
- To determine the impact of TGFβ signaling on photoreceptor viability.
Main Methods:
- Utilized mice with cell type-specific deletion of Tgfbr2 in retinal neurons and Müller cells.
- Employed a genetic model of photoreceptor degeneration (VPP).
- Analyzed retinal morphology, photoreceptor degeneration, and retinal transcriptome alterations.
Main Results:
- TGFβ signaling deficiency did not alter retinal morphology.
- VPP-induced photoreceptor degeneration was significantly exacerbated in double mutant mice.
- Pro-apoptotic genes were induced, and the MAP kinase pathway was dysregulated.
Conclusions:
- TGFβ signaling in retinal neurons and Müller cells demonstrates a neuroprotective effect.
- This signaling pathway offers potential therapeutic strategies for attenuating photoreceptor degeneration.
- Targeting TGFβ signaling could be a promising approach for treating human eye diseases.
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