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Patient-specific iPSC-derived photoreceptor precursor cells as a means to investigate retinitis pigmentosa
Journal article   Open access   Peer reviewed

Patient-specific iPSC-derived photoreceptor precursor cells as a means to investigate retinitis pigmentosa

Budd A Tucker, Robert F Mullins, Luan M Streb, Kristin Anfinson, Mari E Eyestone, Emily Kaalberg, Megan J Riker, Arlene V Drack, Terry A Braun and Edwin M Stone
eLife, Vol.2, e00824
08/27/2013
DOI: 10.7554/elife.00824
PMCID: PMC3755341
PMID: 23991284
url
https://doi.org/10.7554/elife.00824View
Published (Version of record) Open Access

Abstract

Next-generation and Sanger sequencing were combined to identify disease-causing USH2A mutations in an adult patient with autosomal recessive RP. Induced pluripotent stem cells (iPSCs), generated from the patient's keratinocytes, were differentiated into multi-layer eyecup-like structures with features of human retinal precursor cells. The inner layer of the eyecups contained photoreceptor precursor cells that expressed photoreceptor markers and exhibited axonemes and basal bodies characteristic of outer segments. Analysis of the USH2A transcripts of these cells revealed that one of the patient's mutations causes exonification of intron 40, a translation frameshift and a premature stop codon. Western blotting revealed upregulation of GRP78 and GRP94, suggesting that the patient's other USH2A variant (Arg4192His) causes disease through protein misfolding and ER stress. Transplantation into 4-day-old immunodeficient Crb1 (-/-) mice resulted in the formation of morphologically and immunohistochemically recognizable photoreceptor cells, suggesting that the mutations in this patient act via post-developmental photoreceptor degeneration.

DOI: http://dx.doi.org/10.7554/eLife.00824.001

Cell Differentiation Mutation Nerve Tissue Proteins - physiology Humans Retinitis Pigmentosa - genetics Nerve Tissue Proteins - genetics Blotting, Western Mice, Knockout Animals Mice Codon, Terminator Induced Pluripotent Stem Cells - cytology Photoreceptor Cells, Vertebrate - pathology Retinitis Pigmentosa - pathology

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