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Depletion of miR-96 Delays, But Does Not Arrest, Photoreceptor Development in Mice. | LitMetric

AI Article Synopsis

  • The study investigated the role of miR-96, a member of the retinal microRNA-183 cluster, in the development and function of photoreceptors in mice using CRISPR/Cas9 technology to create a mutant model.
  • Findings showed that miR-96 mutant mice experienced a delay in cone development, with mislocalization of cone-specific markers and alterations in retinal structure and function observable through ERG and OCT tests.
  • Despite the initial developmental delays, the study concluded that the absence of miR-96 does not completely halt photoreceptor development, indicating its critical role in the maturation of cones in the retina.

Article Abstract

Purpose: Abundant retinal microRNA-183 cluster (miR-183C) has been reported to be a key player in photoreceptor development and functionality in mice. However, whether there is a protagonist in this cluster remains unclear. Here, we used a mutant mouse model to study the role of miR-96, a member of miR-183C, in photoreceptor development and functionality.

Methods: The mature miR-96 sequence was removed using the CRISPR/Cas9 genome-editing system. Electroretinogram (ERG) and optical coherence tomography (OCT) investigated the changes in structure and function in mouse retinas. Immunostaining determined the localization and morphology of the retinal cells. RNA sequencing was conducted to observe retinal transcription alterations.

Results: The miR-96 mutant mice exhibited cone developmental delay, as occurs in miR-183/96 double knockout mice. Immunostaining of cone-specific marker genes revealed cone nucleus mislocalization and exiguous Opn1mw/Opn1sw in the mutant (MT) mouse outer segments at postnatal day 10. Interestingly, this phenomenon could be relieved in the adult stages. Transcriptome analysis revealed activation of microtubule-, actin filament-, and cilia-related pathways, further supporting the findings. Based on ERG and OCT results at different ages, the MT mice displayed developmental delay not only in cones but also in rods. In addition, a group of miR-96 potential direct and indirect target genes was summarized for interpretation and further studies of miR-96-related retinal developmental defects.

Conclusions: Depletion of miR-96 delayed but did not arrest photoreceptor development in mice. This miRNA is indispensable for mouse photoreceptor maturation, especially for cones.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055555PMC
http://dx.doi.org/10.1167/iovs.63.4.24DOI Listing

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