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Published on: August 24, 2022
Rb deficiency induces p21cip1 expression and delays retinal degeneration in rd1 mice
Zhongping Lv1, Lirong Xiao2, Yunjing Tang1
1The Research Laboratory of Ophthalmology and Vision Sciences, State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, 610041, China; The Department of Ophthalmology, West China Hospital, Sichuan University, Chengdu, 610041, China.
Abstract:
Retinitis pigmentosa (RP) is a major cause of inherited blindness, and there is presently no cure for RP. Rd1 mouse is the most commonly used RP animal model. Re-expression of cell cycle proteins in post-mitotic neurons is considered an important mechanism of neurodegenerative diseases, including RP. The retinoblastoma tumor suppressor (Rb) is a major regulator of cell cycle progression, yet its role in rd1 mouse retina and related signaling pathways have never been analyzed. By crossing α-Cre, Rbf/f mice with rd1 mice, p21cip1-/- mice, Cdk1f/f mice and Cdk2f/f mice, we established multiple rd1 mouse models with deletions of Rb gene, Cdkn1a (p21cip1) gene, Cdk1 and Cdk2 gene in the retina. Cdk inhibitor CR8 was injected into the vitreous of rd1 mouse to investigate its effects on photoreceptor survival. Rb gene knockout (KO) induces cell death in excitatory retinal neurons (rods, rod bipolar and ganglions) and ectopic proliferation of retinal cells; but it paradoxically delays the rod death of rd1 mice, which is primarily mediated by the Cdk inhibitor Cdkn1a (p21cip1). Interestingly, p21cip1 protects the ectopic dividing rd1 rod cells by inhibiting Cdk1 and Cdk2. However, inhibiting Cdk1 and Cdk2 in rd1 mice with non-dividing rods only has limited and transient protective effects. Our data suggest that there is no ectopic division of rd1 rod cells, and RbKO induces ectopic division but delays the death of rd1 rod cells. This reveals the important protective role of Rb-p21cip1-Cdk axis in rd1 rod cells. P21cip1 is a potential target for future therapy of RP.
Insights
Retinitis pigmentosa (RP) involves cell cycle re-expression in neurons. This study reveals the retinoblastoma (Rb)-p21cip1-Cdk axis protects rd1 mouse retinal cells, suggesting p21cip1 as a therapeutic target for inherited blindness.
Area of Science:
- Ophthalmology
- Neuroscience
- Cell Biology
Background:
- Retinitis pigmentosa (RP) is an inherited blindness with no cure.
- The rd1 mouse is a common model for RP research.
- Re-expression of cell cycle proteins in post-mitotic neurons is implicated in RP pathogenesis.
Purpose of the Study:
- To investigate the role of the retinoblastoma (Rb) tumor suppressor and its associated pathways in the rd1 mouse model of RP.
- To determine the impact of Rb gene deletion and cell cycle inhibition on photoreceptor survival and proliferation in rd1 mice.
Main Methods:
- Generated rd1 mouse models with specific gene deletions (Rb, Cdkn1a/p21cip1, Cdk1, Cdk2) using genetic crossing.
- Administered Cdk inhibitor CR8 via intravitreal injection to assess its effects on photoreceptor survival.
- Analyzed the effects of Rb gene knockout (KO) on retinal cell death and proliferation.
Main Results:
- Rb gene KO in rd1 mice induced cell death in excitatory retinal neurons and ectopic cell proliferation.
- Rb KO paradoxically delayed rod cell death in rd1 mice, mediated by the Cdk inhibitor Cdkn1a (p21cip1).
- p21cip1 protected ectopic dividing rd1 rod cells by inhibiting Cdk1 and Cdk2, while direct Cdk inhibition showed limited effects in non-dividing rods.
Conclusions:
- The Rb-p21cip1-Cdk axis plays a crucial protective role in rd1 mouse retinal cells.
- Ectopic division induced by Rb KO delays rd1 rod cell death, highlighting a complex interplay.
- p21cip1 emerges as a potential therapeutic target for retinitis pigmentosa treatment.
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