RPE65 knockout Xenopus laevis have a compromised but detectable electroretinogram and altered visual responses, without retinal degeneration or altered melanophore dispersion

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RPE65 knockout Xenopus laevis exhibited reduced but detectable electroretinograms and visual responses, lacking rhodopsin photopigment in shortened rod outer segments without retinal degeneration.

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AI-generated deep summary by claude@2026-07, 2026-07-16 · read from full text

This study used CRISPR/Cas9 to generate RPE65 knockout Xenopus laevis and then examined how loss of the RPE65 isomerohydrolase affects retinal structure, photopigment status, electrophysiologic responses, and behavior. Rod photoreceptors in the knockout animals had shortened outer segments and lacked detectable rhodopsin photopigment, yet there was no progressive degeneration of rods or cones, and light-induced melanophore dispersion was unchanged. Electroretinography showed greatly reduced but still detectable light responses under both scotopic and photopic conditions, alongside reduced behavioral sensitivity to light. The paper emphasizes the caveat that the phenotype is compromised but non-degenerative, implying RPE65-independent photosensation mechanisms and differing from the dramatic retinal degeneration reported in RPE65-/- mice, and it does not explicitly discuss how these findings map onto endometriosis or adenomyosis. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

The isomerohydrolase RPE65 is a critical element of the visual cycle, the series of enzymatic reactions by which the chromophore of the visual pigments is regenerated following light exposure. In humans, mutations in the rpe65 gene cause a severe form of blindness called Leber’s congenital amaurosis. Studies of RPE65 -/- mice have shown dramatic depletion of 11- cis-retinal in the retina, resulting in a slow retinal degeneration. However, a number of studies suggest that RPE65 may not be necessary for the regeneration of photopigment in all photoreceptor types. Using CRISPR/Cas9 technology, we previously generated RPE65 knockout Xenopus laevis in order to test the involvement of rhodopsin chromophore in the cell death mechanisms associated with rhodopsin mutations and rhodopsin quality control. Here we further characterize the effects of RPE65 knockout in these animals, and show their rod photoreceptors have shortened outer segments that lack detectable rhodopsin photopigment. However, there is no progressive degeneration of rods or cones. Via electroretinography we found greatly reduced but significant responses to light under scotopic and photopic conditions. We also found reduced behavioral sensitivity to light, while light-induced melanophore dispersion was unaffected. RPE65 knockout X. laevis may be a useful system for examining RPE65-independent photosensation mechanisms in vertebrates.
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Abstract The isomerohydrolase RPE65 is a critical element of the visual cycle, the series of enzymatic reactions by which the chromophore of the visual pigments is regenerated following light exposure. In humans, mutations in the rpe65 gene cause a severe form of blindness called Leber’s congenital amaurosis. Studies of RPE65-/- mice have shown dramatic depletion of 11- cis-retinal in the retina, resulting in a slow retinal degeneration. However, a number of studies suggest that RPE65 may not be necessary for the regeneration of photopigment in all photoreceptor types. Using CRISPR/Cas9 technology, we previously generated RPE65 knockout Xenopus laevis in order to test the involvement of rhodopsin chromophore in the cell death mechanisms associated with rhodopsin mutations and rhodopsin quality control. Here we further characterize the effects of RPE65 knockout in these animals, and show their rod photoreceptors have shortened outer segments that lack detectable rhodopsin photopigment. However, there is no progressive degeneration of rods or cones. Via electroretinography we found greatly reduced but significant responses to light under scotopic and photopic conditions. We also found reduced behavioral sensitivity to light, while light-induced melanophore dispersion was unaffected. RPE65 knockout X. laevis may be a useful system for examining RPE65-independent photosensation mechanisms in vertebrates. Competing Interest Statement The authors have declared no competing interest.

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