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Identification of novel long noncoding RNAs underlying vertebrate cardiovascular development.

Circulation · 2015 · Vol. 131 (14) · pp. 1278-1290

Abstract

Long noncoding RNAs (lncRNAs) have emerged as critical epigenetic regulators with important functions in development and disease. Here, we sought to identify and functionally characterize novel lncRNAs critical for vertebrate development. By relying on human pluripotent stem cell differentiation models, we investigated lncRNAs differentially regulated at key steps during human cardiovascular development with a special focus on vascular endothelial cells. RNA sequencing led to the generation of large data sets that serve as a gene expression roadmap highlighting gene expression changes during human pluripotent cell differentiation. Stage-specific analyses led to the identification of 3 previously uncharacterized lncRNAs, TERMINATOR, ALIEN, and PUNISHER, specifically expressed in undifferentiated pluripotent stem cells, cardiovascular progenitors, and differentiated endothelial cells, respectively. Functional characterization, including localization studies, dynamic expression analyses, epigenetic modification monitoring, and knockdown experiments in lower vertebrates, as well as murine embryos and human cells, confirmed a critical role for each lncRNA specific for each analyzed developmental stage. We have identified and functionally characterized 3 novel lncRNAs involved in vertebrate and human cardiovascular development, and we provide a comprehensive transcriptomic roadmap that sheds new light on the molecular mechanisms underlying human embryonic development, mesodermal commitment, and cardiovascular specification.

Publication Types

["Journal Article", "Research Support, N.I.H., Extramural", "Research Support, Non-U.S. Gov't"]

Keywords

MeSH Terms

["Animals", "Cardiovascular System", "Cell Differentiation", "Cell Lineage", "Chromosome Mapping", "Embryonic Development", "Embryonic Stem Cells", "Endothelial Cells", "Fetal Heart", "Gene Expression Regulation, Developmental", "Human Umbilical Vein Endothelial Cells", "Humans", "Mice", "Molecular Sequence Data", "Morpholinos", "Myocytes, Cardiac", "Pluripotent Stem Cells", "RNA, Long Noncoding", "Sequence Analysis, RNA", "Transcriptome", "Vertebrates", "Zebrafish"]

Funding

R01 HG004659 NHGRI NIH HHS (United States)
U54 HG007005 NHGRI NIH HHS (United States)
R01 NS075449 NINDS NIH HHS (United States)
U01 HL107442 NHLBI NIH HHS (United States)
R01 GM084317 NIGMS NIH HHS (United States)
5U01HL107442 NHLBI NIH HHS (United States)

Linked Datasets (4)

GSE54966 GSE via ncbi_elink
GEO

Transcriptomic analysis reveals novel long non-coding RNAs critical for vertebrate development [Illumina]

Homo sapiens
GSE54969 GSE via ncbi_elink
GEO

Transcriptomic analysis reveals novel long non-coding RNAs critical for vertebrate development

Homo sapiens
GSE54964 GSE via ncbi_elink
GEO

Transcriptomic analysis reveals novel long non-coding RNAs critical for vertebrate development [Affymetrix]

Homo sapiens
GSE54968 GSE via ncbi_elink
GEO

Transcriptomic analysis reveals novel long non-coding RNAs critical for vertebrate development [RNA-Seq]

Homo sapiens
6 data files
FileTypeSize
H1_D0_1.fq.gz RNA-Seq 10.5 GB
H1_D2_1.fq.gz RNA-Seq 10.1 GB
H1_D4_1.fq.gz RNA-Seq 11.1 GB
H1_D8_1.fq.gz RNA-Seq 11.3 GB
H_Endo_1.fq.gz RNA-Seq 9.9 GB
HUVEC_1.fq.gz RNA-Seq 11.6 GB

Analysis Pipelines (4)

Microarray geo_data_processing GSE54964
geo_data_processing GSE54966
RNA-seq geo_data_processing GSE54968
geo_data_processing GSE54969