Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.

BACKGROUND:MicroRNAs are required for maintenance of pluripotency as well as differentiation, but since more microRNAs have been computationally predicted in genome than have been found, there are likely to be undiscovered microRNAs expressed early in stem cell differentiation. METHODOLOGY/PRINCIPAL...

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Main Authors: Loyal A Goff, Jonathan Davila, Mavis R Swerdel, Jennifer C Moore, Rick I Cohen, Hao Wu, Yi E Sun, Ronald P Hart
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-09-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2745660?pdf=render
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spelling doaj-59811a69d7fc4678a7a084bff70e68e42020-11-24T22:11:27ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-09-0149e719210.1371/journal.pone.0007192Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.Loyal A GoffJonathan DavilaMavis R SwerdelJennifer C MooreRick I CohenHao WuYi E SunRonald P HartBACKGROUND:MicroRNAs are required for maintenance of pluripotency as well as differentiation, but since more microRNAs have been computationally predicted in genome than have been found, there are likely to be undiscovered microRNAs expressed early in stem cell differentiation. METHODOLOGY/PRINCIPAL FINDINGS:SOLiD ultra-deep sequencing identified >10(7) unique small RNAs from human embryonic stem cells (hESC) and neural-restricted precursors that were fit to a model of microRNA biogenesis to computationally predict 818 new microRNA genes. These predicted genomic loci are associated with chromatin patterns of modified histones that are predictive of regulated gene expression. 146 of the predicted microRNAs were enriched in Ago2-containing complexes along with 609 known microRNAs, demonstrating association with a functional RISC complex. This Ago2 IP-selected subset was consistently expressed in four independent hESC lines and exhibited complex patterns of regulation over development similar to previously-known microRNAs, including pluripotency-specific expression in both hESC and iPS cells. More than 30% of the Ago2 IP-enriched predicted microRNAs are new members of existing families since they share seed sequences with known microRNAs. CONCLUSIONS/SIGNIFICANCE:Extending the classic definition of microRNAs, this large number of new microRNA genes, the majority of which are less conserved than their canonical counterparts, likely represent evolutionarily recent regulators of early differentiation. The enrichment in Ago2 containing complexes, the presence of chromatin marks indicative of regulated gene expression, and differential expression over development all support the identification of 146 new microRNAs active during early hESC differentiation.http://europepmc.org/articles/PMC2745660?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Loyal A Goff
Jonathan Davila
Mavis R Swerdel
Jennifer C Moore
Rick I Cohen
Hao Wu
Yi E Sun
Ronald P Hart
spellingShingle Loyal A Goff
Jonathan Davila
Mavis R Swerdel
Jennifer C Moore
Rick I Cohen
Hao Wu
Yi E Sun
Ronald P Hart
Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.
PLoS ONE
author_facet Loyal A Goff
Jonathan Davila
Mavis R Swerdel
Jennifer C Moore
Rick I Cohen
Hao Wu
Yi E Sun
Ronald P Hart
author_sort Loyal A Goff
title Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.
title_short Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.
title_full Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.
title_fullStr Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.
title_full_unstemmed Ago2 immunoprecipitation identifies predicted microRNAs in human embryonic stem cells and neural precursors.
title_sort ago2 immunoprecipitation identifies predicted micrornas in human embryonic stem cells and neural precursors.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-09-01
description BACKGROUND:MicroRNAs are required for maintenance of pluripotency as well as differentiation, but since more microRNAs have been computationally predicted in genome than have been found, there are likely to be undiscovered microRNAs expressed early in stem cell differentiation. METHODOLOGY/PRINCIPAL FINDINGS:SOLiD ultra-deep sequencing identified >10(7) unique small RNAs from human embryonic stem cells (hESC) and neural-restricted precursors that were fit to a model of microRNA biogenesis to computationally predict 818 new microRNA genes. These predicted genomic loci are associated with chromatin patterns of modified histones that are predictive of regulated gene expression. 146 of the predicted microRNAs were enriched in Ago2-containing complexes along with 609 known microRNAs, demonstrating association with a functional RISC complex. This Ago2 IP-selected subset was consistently expressed in four independent hESC lines and exhibited complex patterns of regulation over development similar to previously-known microRNAs, including pluripotency-specific expression in both hESC and iPS cells. More than 30% of the Ago2 IP-enriched predicted microRNAs are new members of existing families since they share seed sequences with known microRNAs. CONCLUSIONS/SIGNIFICANCE:Extending the classic definition of microRNAs, this large number of new microRNA genes, the majority of which are less conserved than their canonical counterparts, likely represent evolutionarily recent regulators of early differentiation. The enrichment in Ago2 containing complexes, the presence of chromatin marks indicative of regulated gene expression, and differential expression over development all support the identification of 146 new microRNAs active during early hESC differentiation.
url http://europepmc.org/articles/PMC2745660?pdf=render
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