研究目的
To develop reliable screening strategies to assess if stabilization or enhanced degradation of P23H mutant rhodopsin could rescue rod photoreceptors, revealing active compounds and clarifying molecular mechanisms.
研究成果
The developed HTS assays and complementary techniques can reliably identify active compounds for stabilizing or degrading P23H mutant opsin, with potential for therapeutic development in retinitis pigmentosa. The approach is scalable and can be extended to other pathological mutations, providing insights into biosynthesis and degradation pathways.
研究不足
Challenges include compartmentalization of membrane proteins, experimental artifacts like drug-dependent alteration of luminescence, and the need for multiple assays to eliminate false positives. The study uses model compounds (9-cis-retinal and Evans Blue) due to lack of known degradation enhancers, and scalability to other mutations or in vivo models may require further validation.
1:Experimental Design and Method Selection:
Developed cell-based bioluminescence reporter assays for high-throughput screening (HTS) of compounds affecting P23H mutant opsin stabilization or degradation, complemented by immunoblotting and image-based analyses.
2:Sample Selection and Data Sources:
Used stable cell lines (e.g., U2OS, HEK293, NIH3T3) expressing mutant or wild-type opsin constructs.
3:List of Experimental Equipment and Materials:
Included microplate readers (e.g., EnVision, SpectraMax L), imaging systems (e.g., Operetta High Content Imaging System), antibodies (e.g., anti-rhodopsin antibodies), and reagents (e.g., 9-cis-retinal, Evans Blue).
4:Experimental Procedures and Operational Workflow:
Involved cell culture, treatment with compounds, luminescence or fluorescence measurements, immunostaining, and data analysis.
5:Data Analysis Methods:
Used software like Origin8.1 and ImageJ for curve fitting and intensity measurements, with quality control parameters (e.g., Z' value).
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EnVision plate reader
EnVision
PerkinElmer
Reading luminescence in assays
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Operetta High Content Imaging System
Operetta
PerkinElmer
Fluorescence imaging and analysis
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Multidrop dispenser
Multidrop
Thermo Scientific
Dispensing cell suspensions and reagents
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Gal-Screen System
Gal-Screen
Applied Biosystems
b-Galactosidase assay buffer and substrate
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Acapella Software
Acapella
PerkinElmer
Image analysis in Columbus system
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SpectraMax L plate reader
SpectraMax L
Molecular Devices
Dual-emission reading for BRET assays
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EL406 Washer Dispenser
EL406
BioTek
Microplate liquid handling
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ViviRen
ViviRen
Promega
Rluc substrate
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Coelenterazine h
Coelenterazine h
NanoLight
Substrate for luciferase assays
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DAPI
DAPI
Life Technologies
Nuclear staining
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PNGaseF
PNGaseF
NEB
Deglycosylation enzyme
暂无现货
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Anti-rhodopsin antibody 1D4
1D4
Immunostaining and immunoassays
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Anti-rhodopsin antibody B6-30
B6-30
Immunoassays
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Streptavidin-conjugated donor beads
PerkinElmer
Used in ALPHA immunoassay
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Acceptor beads
PerkinElmer
Used in ALPHA immunoassay
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Origin8.1 software
Origin8.1
OriginLab
Data analysis and curve fitting
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ImageJ software
ImageJ
National Institutes of Health
Image analysis for immunoblots
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