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identifier PRJEB6653
type bioproject
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organism
title Comprehensive transcriptome analysis of pig induced pluripotent stem cells by high-throughput sequencing
description The wide application of pig disease model has caused a surge of interest in the study ofderivation of pig induced pluripotent cells (iPSCs). Here we performed genome-wide analysis of gene expression profiling by RNA-seq and small RNA-seq and DNA methylation profile by MeDIP-seq in pig iPSCs through comparison with somatic cells. We identified mRNA and microRNA transcripts that were specifically expressed in pig iPSCs. Our analysis identifies the genes up-regulated in pig iPS compared with somatic cells and also the differentially expressed genes between pig iPSCs under different culture medium. We then pursued comprehensive bioinformatics analyses, including functional annotation of the generated data within the context of biological pathways, to uncover novel biological functions associated with maintenance of pluripotency in pig. This result supports that pig iPS have transcript profiles linked to “ribosome”, “chromatin remodeling”, and genes involved in “cell cycle “that may be critical to maintain their pluripotency, plasticity, and stem cell function. Our analysis demonstrates the key role of RNA splicing in regulating the pluripotency phenotype of pig cells. Specifically, the data indicate distinctive expression patterns for SALL4 spliced variants in different pig cell types and highlight the necessity of defining the type of SALL4 when addressing the expression of this gene in pig cells. MeDIP-seq data revealed that the distribution patterns of methylation signals in pig iPS and somatic cells along the genome. We identify 25 novel porcine miRNA, including pluripotency-related miR-302/367cluster up-regulated in pig iPSCs. At last, we profile the dynamic gene expression signature of pluripotent genes in the preimplantation development embryo of pig. The resulting comprehensive data allowed us to compare various different subsets of pig pluripotent cell. This information provided by our analysis will ultimately advance the efforts at generating stable naïve pluripotency in pig cells.
data type Transcriptome or Gene expression
organization
publication
properties 
{...}
dbXrefs
sra-run  ERR553470ERR553471ERR553472
sra-submission  ERA323386
biosample  SAMEA2733017SAMEA2733019SAMEA2733018
sra-study  ERP006202
sra-sample  ERS494776ERS494778ERS494777
sra-experiment  ERX512539ERX512541ERX512540
distribution JSONJSON-LD
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status public
visibility unrestricted-access
dateCreated 2015-09-25T00:00:00Z
dateModified 2015-09-25T00:00:00Z
datePublished 2015-09-17T00:00:00Z