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Published on: May 3, 2018
The 3-Phosphoinositide-Dependent Protein Kinase 1 Inhibits Rod Photoreceptor Development
Tiaosi Xing1, Daniel T Hass2, Samuel S Zhang2
1Department of Anatomy and Cell Biology, East Carolina University, Greenville, NC, United States.
Abstract:
The transition of rod precursor cells to post-mitotic rod photoreceptors can be promoted by extrinsic factors such as insulin-like growth factor 1 (IGF-1), which regulates phosphatidylinositide concentration, and consequently the 3-phosphoinositide-dependent protein kinase-1 (PDPK-1). PDPK-1 is a 63 kDa cytoplasmic kinase that controls cell proliferation and differentiation. In the mouse retina, PDPK-1 and its phosphorylated derivative p-PDPK-1 (Ser241), showed peak expression during the first postnatal (PN) day with a substantial decline by PN7 and in the adult retina. Though initially widely distributed among cell types, PDPK-1 expression decreased first in the inner retina and later in the outer retina. When PDPK-1 is inhibited in neonatal retinal explants by BX795, there is a robust increase in rod photoreceptor numbers. The increase in rods depended on the activity of PKC, as BX795 had no effect when PKC is inhibited. Inhibition of PDPK-1-dependent kinases, such as P70-S6K, but not others, such as mTORC-1, stimulated rod development. The P70-S6K-dependent increase in rods appears to be correlated with phosphorylation of Thr252 and not at Thr389, a substrate of mTORC-1. This pathway is also inactive while PKC activity is inhibited. We also found that inhibition of the kinase mTORC-2, also stimulated by insulin activity, similarly increased rod formation, and this effect appears to be independent of PKC activity. This may represent a novel intracellular signaling pathway that also stimulates photoreceptor development. Consistent with previous studies, stimulation of STAT3 activity is sufficient to prevent any PDPK-1, P70-S6K, or mTORC2-dependent increase in rods. Together the data indicate that PDPK-1 and other intrinsic kinases downstream of IGF-1 are key regulators of rod photoreceptor formation.
Insights
Insulin-like growth factor 1 (IGF-1) signaling regulates rod photoreceptor development. Inhibiting 3-phosphoinositide-dependent protein kinase-1 (PDPK-1) and mTORC-2 promotes rod formation, revealing new pathways for photoreceptor development.
Area of Science:
- Retinal development
- Photoreceptor biology
- Cell signaling
Background:
- Rod photoreceptors are crucial for vision.
- Their development is regulated by extrinsic factors like IGF-1.
- IGF-1 influences intracellular signaling pathways, including PDPK-1.
Purpose of the Study:
- To investigate the role of PDPK-1 and related kinases in rod photoreceptor development.
- To identify novel signaling pathways regulating rod formation.
- To understand the downstream targets of IGF-1 in the developing retina.
Main Methods:
- Mouse retinal explant cultures.
- Pharmacological inhibition of kinases (PDPK-1, PKC, P70-S6K, mTORC-1, mTORC-2).
- Immunoblotting to detect phosphorylated proteins and protein expression levels.
- STAT3 activation assays.
Main Results:
- Inhibition of PDPK-1 using BX795 significantly increased rod photoreceptor numbers.
- This increase was dependent on Protein Kinase C (PKC) activity.
- Inhibition of P70-S6K and mTORC-2 also stimulated rod development, with mTORC-2 acting independently of PKC.
- STAT3 activation blocked PDPK-1, P70-S6K, and mTORC2-dependent rod increases.
Conclusions:
- PDPK-1 is a key intrinsic kinase regulating rod photoreceptor formation.
- Novel signaling pathways involving P70-S6K and mTORC-2, downstream of IGF-1, also promote rod development.
- Understanding these pathways could lead to therapeutic strategies for retinal diseases.
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