Related Experiment Video
Updated: Jul 20, 2026

An Assay to Detect Protection of the Retinal Vasculature from Diabetes-Related Death in Mice
Published on: January 12, 2024
Small molecular weight G-protein, H-Ras, and retinal endothelial cell apoptosis in diabetes
Renu A Kowluru1, Anjan Kowluru, Mamta Kanwar
1Department of Ophthalmology, Kresge Eye Institute, 4717 St. Antoine, Detroit, MI 48201, USA. rkowluru@med.wayne.edu
Abstract:
We have demonstrated that the expressions of small molecular weight G-protein, H-Ras, and its effector protein, Raf-1, are increased in the retina in diabetes, and the specific inhibitors of Ras function inhibit glucose-induced apoptosis of retinal capillary cells. This study is to examine the contributory roles for H-Ras in glucose-induced apoptosis of retinal endothelial cells by genetic manipulation of functionally active H-Ras levels. Bovine retinal endothelial cells were transfected with the plasmids of either wild type (WT), constitutively active (V12) or dominant-negative (N17) H-Ras. Glucose-induced increase in apoptosis, nitric oxide (NO) levels and activation of NF-kappaB and caspase-3 were determined in these genetically manipulated cells. Exposure of bovine retinal endothelial cells to 20 mM glucose significantly increased H-Ras activation as determined by Raf-1 binding assay. Overexpression of V12 in the endothelial cells further increased their glucose-induced apoptosis by 40%, NO levels by about 50%, and activated NF-kappaB and caspase-3 by about 30-40% compared to the untransfected cells incubated in 20 mM glucose. In contrast, overexpression of the inactive mutant, N17, inhibited glucose-mediated increases in apoptotic cell death, NO levels and NF-kappaB and caspase-3 activation; the values were significantly different (p < 0.02) compared to those obtained from the untransfected cells incubated under similar conditions. Our findings demonstrate that H-Ras activation is important in the activation of the specific signaling events leading to the accelerated retinal capillary cell apoptosis in hyperglycemic conditions, suggesting the possible use of H-Ras inhibitors to inhibit the pathogenesis of diabetic retinopathy.
Insights
High glucose levels activate H-Ras, a small G-protein, promoting retinal cell apoptosis in diabetes. Inhibiting H-Ras may prevent diabetic retinopathy progression.
Area of Science:
- Biochemistry
- Cell Biology
- Ophthalmology
Background:
- Diabetes mellitus is a leading cause of blindness, often due to diabetic retinopathy.
- Hyperglycemia in diabetes accelerates retinal capillary cell apoptosis.
- The role of H-Ras signaling in this process requires further elucidation.
Purpose of the Study:
- To investigate the specific role of H-Ras in glucose-induced apoptosis of retinal endothelial cells.
- To genetically manipulate H-Ras activity and assess its impact on cellular signaling pathways.
Main Methods:
- Bovine retinal endothelial cells were transfected with wild type, constitutively active (V12), or dominant-negative (N17) H-Ras plasmids.
- Cells were exposed to high glucose (20 mM) to induce apoptosis.
- Apoptosis, nitric oxide (NO) levels, and activation of NF-kappaB and caspase-3 were measured.
Main Results:
- High glucose significantly increased H-Ras activation, apoptosis, NO levels, and NF-kappaB/caspase-3 activation.
- Overexpression of V12 H-Ras exacerbated glucose-induced apoptosis and signaling.
- Overexpression of N17 H-Ras significantly inhibited these glucose-mediated effects.
Conclusions:
- H-Ras activation is a critical mediator of accelerated retinal capillary cell apoptosis under hyperglycemic conditions.
- Targeting H-Ras signaling presents a potential therapeutic strategy for preventing diabetic retinopathy.
Related Concept Videos
Diabetic Retinopathy
Small GTPases - Ras and Rho
Three regulatory proteins control their activity:
The Ras Gene
Ras is a superfamily...
Diabetic Nephropathy
Regulation of Angiogenesis and Blood Supply

