Related Experiment Video
Updated: Jan 24, 2026

Light Preference Assay to Study Innate and Circadian Regulated Photobehavior in Drosophila Larvae
Published on: April 20, 2013
The Efemp1R345W Macular Dystrophy Mutation Causes Amplified Circadian and Photophobic Responses to Light in Mice
Stewart Thompson1,2,3, Frederick R Blodi2,3,4,5, Demelza R Larson3,6,7
1Department of Psychology, New Mexico Tech, Socorro, New Mexico, United States.
Purpose:
The R345W mutation in EFEMP1 causes malattia leventinese, an autosomal dominant eye disease with pathogenesis similar to an early-onset age-related macular degeneration. In mice, Efemp1R345W does not cause detectable degeneration but small subretinal deposits do accumulate. The purpose of this study was to determine whether there were abnormal responses to light at this presymptomatic stage in Efemp1R345W mice.
Methods:
Responses to light were assessed by visual water task, circadian phase shifting, and negative masking behavior. The mechanism of abnormal responses was investigated by anterior eye exam, electroretinogram, melanopsin cell quantification, and multielectrode recording of retinal ganglion cell activity.
Results:
Visual acuity was not different in Efemp1R345W mice. However, amplitudes of circadian phase shifting (P = 0.016) and negative masking (P < 0.0001) were increased in Efemp1R345W mice. This phenotype was not explained by anterior eye defects or amplified outer retina responses. Instead, we identified increased melanopsin-generated responses to light in the ganglion cell layer of the retina (P < 0.01).
Conclusions:
Efemp1R345W increases the sensitivity to light of behavioral responses driven by detection of irradiance. An amplified response to light in melanopsin-expressing intrinsically photosensitive retinal ganglion cells (ipRGCs) is consistent with this phenotype. The major concern with this effect of the malattia leventinese mutation is the potential for abnormal regulation of physiology by light to negatively affect health.
Insights
Mice with the malattia leventinese mutation show increased light sensitivity in behavioral responses, linked to amplified melanopsin cell activity in the retina, even before vision degeneration occurs.
Area of Science:
- Ophthalmology
- Neuroscience
- Genetics
Background:
- Malattia leventinese is an autosomal dominant eye disease caused by the EFEMP1 R345W mutation, sharing similarities with early-onset age-related macular degeneration.
- Efemp1R345W mutant mice exhibit subretinal deposits but no overt degeneration, presenting a model for presymptomatic disease stages.
Purpose of the Study:
- To investigate presymptomatic light response abnormalities in Efemp1R345W mutant mice.
- To determine if the R345W mutation affects retinal function before the onset of degeneration.
Main Methods:
- Behavioral assessments including visual water task, circadian phase shifting, and negative masking.
- Ocular examinations, electroretinography, melanopsin cell quantification, and retinal ganglion cell activity recording.
Main Results:
- No differences in visual acuity were observed between mutant and wild-type mice.
- Increased amplitudes in circadian phase shifting and negative masking behaviors were noted in Efemp1R345W mice.
- Amplified melanopsin-driven responses in the retinal ganglion cell layer were identified as the underlying mechanism.
Conclusions:
- The Efemp1R345W mutation enhances light sensitivity in behavioral responses mediated by irradiance detection.
- Amplified signaling from intrinsically photosensitive retinal ganglion cells (ipRGCs) underlies this heightened light sensitivity.
- A significant concern is the potential for light-induced physiological dysregulation impacting overall health.
Related Concept Videos
Photoreceptors and Plant Responses to Light
Chronopharmacokinetics: Circadian Rhythms and Influence on Drug Response
The time of drug administration is an important factor to consider, as it can influence the toxic dose of a drug. For example, a study conducted by Prins et al. in 1997 examined the effects of the timing of...
Mutations
BJT Amplifiers
In BJT amplifier configurations, particularly in common-emitter setups, the transistor's role...
Operational Amplifiers
MOSFET Amplifiers

