Related Experiment Video
Updated: Nov 15, 2025

Induction and Analysis of Oxidative Stress in Sleeping Beauty Transposon-Transfected Human Retinal Pigment Epithelial Cells
Published on: December 11, 2020
Transcriptomic Changes Associated with Loss of Cell Viability Induced by Oxysterol Treatment of a Retinal
Bruce A Pfeffer1,2, Libin Xu3, Steven J Fliesler1,2,4
1Department of Ophthalmology (Ross Eye Institute), Jacobs School of Medicine and Biomedical Sciences, SUNY-University at Buffalo, Buffalo, NY 14209, USA.
Abstract:
Smith-Lemli-Opitz Syndrome (SLOS) results from mutations in the gene encoding the enzyme DHCR7, which catalyzes conversion of 7-dehydrocholesterol (7DHC) to cholesterol (CHOL). Rats treated with a DHCR7 inhibitor serve as a SLOS animal model, and exhibit progressive photoreceptor-specific cell death, with accumulation of 7DHC and oxidized sterols. To understand the basis of this cell type specificity, we performed transcriptomic analyses on a photoreceptor-derived cell line (661W), treating cells with two 7DHC-derived oxysterols, which accumulate in tissues and bodily fluids of SLOS patients and in the rat SLOS model, as well as with CHOL (negative control), and evaluated differentially expressed genes (DEGs) for each treatment. Gene enrichment analysis and compilation of DEG sets indicated that endoplasmic reticulum stress, oxidative stress, DNA damage and repair, and autophagy were all highly up-regulated pathways in oxysterol-treated cells. Detailed analysis indicated that the two oxysterols exert their effects via different molecular mechanisms. Changes in expression of key genes in highlighted pathways (Hmox1, Ddit3, Trib3, and Herpud1) were validated by immunofluorescence confocal microscopy. The results extend our understanding of the pathobiology of retinal degeneration and SLOS, identifying potential new druggable targets for therapeutic intervention into these and other related orphan diseases.
Insights
Smith-Lemli-Opitz Syndrome (SLOS) involves DHCR7 gene mutations, leading to cell death. This study reveals oxysterols trigger endoplasmic reticulum and oxidative stress in photoreceptor cells, offering new therapeutic targets.
Area of Science:
- Biochemistry
- Genetics
- Cell Biology
Background:
- Smith-Lemli-Opitz Syndrome (SLOS) is caused by DHCR7 gene mutations, impairing cholesterol synthesis.
- A rat model of SLOS shows photoreceptor cell death due to 7-dehydrocholesterol (7DHC) and oxysterol accumulation.
Purpose of the Study:
- To investigate the molecular mechanisms of photoreceptor cell death in SLOS.
- To identify cellular pathways affected by accumulating oxysterols in SLOS.
Main Methods:
- Transcriptomic analysis of a photoreceptor cell line (661W) treated with 7DHC-derived oxysterols.
- Gene enrichment analysis and validation of key gene expression changes using immunofluorescence microscopy.
Main Results:
- Oxysterol treatment significantly upregulated pathways including endoplasmic reticulum stress, oxidative stress, DNA damage/repair, and autophagy.
- Two distinct oxysterols induced cell stress via different molecular mechanisms.
- Key genes like Hmox1, Ddit3, Trib3, and Herpud1 showed altered expression.
Conclusions:
- Oxysterols contribute to photoreceptor degeneration in SLOS through specific stress pathways.
- This research identifies potential therapeutic targets for SLOS and related retinal diseases.
More Related Videos
10:32Transcriptomic Analysis of Human Retinal Surgical Specimens Using jouRNAl
Published on: August 14, 2013
10:39Author Spotlight: Improved Lipofuscin Models and Quantification of Outer Segment Phagocytosis Capacity in Highly Polarized Human Retinal Pigment Epithelial Cultures
Published on: April 14, 2023