Related Experiment Video
Updated: Mar 1, 2026

Primary Cell Cultures to Study the Regeneration Potential of Murine Müller Glia after MicroRNA Treatment
Published on: March 28, 2022
miR-183/96 plays a pivotal regulatory role in mouse photoreceptor maturation and maintenance
Lue Xiang1,2, Xue-Jiao Chen1,2, Kun-Chao Wu1,2
1Laboratory for Stem Cell and Retinal Regeneration, Institute of Stem Cell Research, Division of Ophthalmic Genetics, The Eye Hospital, Wenzhou Medical University, Wenzhou 325027, China.
Abstract:
MicroRNAs (miRNAs) are known to be essential for retinal maturation and functionality; however, the role of the most abundant miRNAs, the miR-183/96/182 cluster (miR-183 cluster), in photoreceptor cells remains unclear. Here we demonstrate that ablation of two components of the miR-183 cluster, miR-183 and miR-96, significantly affects photoreceptor maturation and maintenance in mice. Morphologically, early-onset dislocated cone nuclei, shortened outer segments and thinned outer nuclear layers are observed in the miR-183/96 double-knockout (DKO) mice. Abnormal photoreceptor responses, including abolished photopic electroretinography (ERG) responses and compromised scotopic ERG responses, reflect the functional changes in the degenerated retina. We further identify Slc6a6 as the cotarget of miR-183 and miR-96. The expression level of Slc6a6 is significantly higher in the DKO mice than in the wild-type mice. In contrast, Slc6a6 is down-regulated by adeno-associated virus-mediated overexpression of either miR-183 or miR-96 in wild-type mice. Remarkably, both silencing and overexpression of Slc6a6 in the retina are detrimental to the electrophysiological activity of the photoreceptors in response to dim light stimuli. We demonstrate that miR-183/96-mediated fine-tuning of Slc6a6 expression is indispensable for photoreceptor maturation and maintenance, thereby providing insight into the epigenetic regulation of photoreceptors in mice.
Insights
The miR-183/96/182 cluster (miR-183 cluster) is crucial for photoreceptor development. Deleting miR-183 and miR-96 in mice impairs photoreceptor maturation and function, impacting vision.
Area of Science:
- Ophthalmology
- Molecular Biology
- Genetics
Background:
- MicroRNAs (miRNAs) regulate retinal development and function.
- The miR-183/96/182 cluster's role in photoreceptor cells is not well understood.
Purpose of the Study:
- Investigate the function of the miR-183 cluster in mouse photoreceptor maturation and maintenance.
- Identify targets of miR-183 and miR-96 in photoreceptors.
Main Methods:
- Generation of miR-183/96 double-knockout (DKO) mice.
- Morphological analysis of photoreceptor layers.
- Electroretinography (ERG) to assess visual function.
- In vivo manipulation of Slc6a6 expression using adeno-associated virus (AAV) vectors.
Main Results:
- DKO mice exhibit photoreceptor disorganization, shortened outer segments, and thinned outer nuclear layers.
- Photopic ERG responses were abolished, and scotopic ERG responses were compromised in DKO mice.
- Slc6a6 was identified as a direct target of miR-183 and miR-96, with its expression elevated in DKO mice.
- Both Slc6a6 silencing and overexpression negatively impacted photoreceptor electrophysiology.
Conclusions:
- The miR-183/96 cluster is essential for photoreceptor maturation and maintenance.
- Fine-tuning of Slc6a6 expression by miR-183/96 is critical for photoreceptor function.
- This study provides insights into the epigenetic regulation of photoreceptor development and function.
More Related Videos
07:38Quantifying the Activity of cis-Regulatory Elements in the Mouse Retina by Explant Electroporation
Published on: June 28, 2011
09:10Direct-Coupled Electroretinogram DC-ERG for Recording the Light-Evoked Electrical Responses of the Mouse Retinal Pigment Epithelium
Published on: July 14, 2020