4.6 Article

Transcriptome Analysis of the Human Corneal Endothelium

Journal

INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE
Volume 55, Issue 12, Pages 7821-7830

Publisher

ASSOC RESEARCH VISION OPHTHALMOLOGY INC
DOI: 10.1167/iovs.14-15021

Keywords

corneal endothelium; HCEnC; transcriptome; gene expression; corneal endothelial dystrophy

Categories

Funding

  1. National Eye Institute [R01 EY022082, P30 EY000331]
  2. Research to Prevent Blindness
  3. Gerald Oppenheimer Family Foundation Center for the Prevention of Eye Disease

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PURPOSE. To comprehensively characterize human corneal endothelial cell (HCEnC) gene expression and age-dependent differential gene expression and to identify expressed genes mapped to chromosomal loci associated with the corneal endothelial dystrophies posterior polymorphous corneal dystrophy (PPCD) 1, Fuchs endothelial corneal dystrophy (FECD) 4, and X-linked endothelial dystrophy (XECD). METHODS. Total RNA was isolated from ex vivo corneal endothelium obtained from six pediatric and five adult donor corneas. Complementary DNA was hybridized to the Affymetrix GeneChip 1.1ST array. Data analysis was performed using Partek Genomics Suite software, and differentially expressed genes were validated by digital molecular barcoding technology. RESULTS. Transcripts corresponding to 12,596 genes were identified in HCEnC. Nine genes displayed the most significant differential expression between pediatric and adult HCEnC: CAPN6, HIST1H3A, HIST1H4E, and HSPA2 were expressed at higher levels in pediatric HCEnC, while ITGBL1, NALCN, PREX2, TAC1, and TMOD1 were expressed at higher levels in adult HCEnC. Analysis of the PPCD1, FECD4 and XECD loci demonstrated transcription of 53/ 95 protein-coding genes in the PPCD1 locus, 27/40 in the FECD4 locus, and 35/68 in the XECD locus. CONCLUSIONS. An analysis of the HCEnC transcriptome reveals the expression of almost 13,000 genes, with less than 1% mapped to chromosomal loci associated with PPCD1, FECD4, and XECD. At least nine genes demonstrated significant differential expression between pediatric and adult HCEnC, defining specific functional properties distinct to each age group. These data will serve as a resource for vision scientists investigating HCEnC gene expression and can be used to focus the search for the genetic basis of the corneal endothelial dystrophies for which the genetic basis remains unknown.

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