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Characterization of lincRNA expression in the human retinal pigment epithelium and differentiated induced pluripotent stem cells

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2017

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Public Library of Science
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Au, Elizabeth D., Rosario Fernandez-Godino, Tadeusz J. Kaczynksi, Maria E. Sousa, and Michael H. Farkas. 2017. “Characterization of lincRNA expression in the human retinal pigment epithelium and differentiated induced pluripotent stem cells.” PLoS ONE 12 (8): e0183939. doi:10.1371/journal.pone.0183939. http://dx.doi.org/10.1371/journal.pone.0183939.

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Abstract

Long intervening non-coding RNAs (lincRNAs) are increasingly being implicated as important factors in many aspects of cellular development, function, and disease, but remain poorly understood. In this study, we examine the human retinal pigment epithelium (RPE) lincRNA transcriptome using RNA-Seq data generated from human fetal RPE (fRPE), RPE derived from human induced pluripotent stem cells (iPS-RPE), and undifferentiated iPS (iPS). In addition, we determine the suitability of iPS-RPE, from a transcriptome standpoint, as a model for use in future studies of lincRNA structure and function. A comparison of gene and isoform expression across the whole transcriptome shows only minimal differences between all sample types, though fRPE and iPS-RPE show higher concordance than either shows with iPS. Notably, RPE signature genes show the highest degree of fRPE to iPS-RPE concordance, indicating that iPS-RPE cells provide a suitable model for use in future studies. An analysis of lincRNAs demonstrates high concordance between fRPE and iPS-RPE, but low concordance between either RPE and iPS. While most lincRNAs are expressed at low levels (RPKM < 10), there is a high degree of concordance among replicates within each sample type, suggesting the expression is consistent, even at levels subject to high variability. Finally, we identified and annotated 180 putative novel genes in the fRPE samples, a majority of which are also expressed in the iPS-RPE. Overall, this study represents the first characterization of lincRNA expression in the human RPE, and provides a model for studying the role lincRNAs play in RPE development, function, and disease.

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Biology and life sciences, Biochemistry, Nucleic acids, RNA, Non-coding RNA, Long non-coding RNAs, Biology and Life Sciences, Genetics, Gene Expression, Computational Biology, Genome Analysis, Transcriptome Analysis, Genomics, Cell Biology, Cellular Types, Animal Cells, Stem Cells, Induced Pluripotent Stem Cells, Database and Informatics Methods, Biological Databases, Genomic Databases, Anatomy, Head, Eyes, Medicine and Health Sciences, Ocular System, Neurons, Afferent Neurons, Photoreceptors, Neuroscience, Cellular Neuroscience, Sensory Perception, Sensory Receptors, Psychology, Social Sciences, Signal Transduction, Developmental Biology, Cell Differentiation

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