Cargando…

Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons

BACKGROUND: We initiated differentiation of human embryonic stem cells (hESCs) into dopamine neurons, obtained a purified population of neuronal precursor cells by cell sorting, and determined patterns of gene transcription. METHODOLOGY: Dopaminergic differentiation of hESCs was initiated by culturi...

Descripción completa

Detalles Bibliográficos
Autores principales: Freed, William J., Chen, Jia, Bäckman, Cristina M., Schwartz, Catherine M., Vazin, Tandis, Cai, Jingli, Spivak, Charles E., Lupica, Carl R., Rao, Mahendra S., Zeng, Xianmin
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2170519/
https://www.ncbi.nlm.nih.gov/pubmed/18183302
http://dx.doi.org/10.1371/journal.pone.0001422
_version_ 1782144898002059264
author Freed, William J.
Chen, Jia
Bäckman, Cristina M.
Schwartz, Catherine M.
Vazin, Tandis
Cai, Jingli
Spivak, Charles E.
Lupica, Carl R.
Rao, Mahendra S.
Zeng, Xianmin
author_facet Freed, William J.
Chen, Jia
Bäckman, Cristina M.
Schwartz, Catherine M.
Vazin, Tandis
Cai, Jingli
Spivak, Charles E.
Lupica, Carl R.
Rao, Mahendra S.
Zeng, Xianmin
author_sort Freed, William J.
collection PubMed
description BACKGROUND: We initiated differentiation of human embryonic stem cells (hESCs) into dopamine neurons, obtained a purified population of neuronal precursor cells by cell sorting, and determined patterns of gene transcription. METHODOLOGY: Dopaminergic differentiation of hESCs was initiated by culturing hESCs with a feeder layer of PA6 cells. Differentiating cells were then sorted to obtain a pure population of PSA-NCAM-expressing neuronal precursors, which were then analyzed for gene expression using Massive Parallel Signature Sequencing (MPSS). Individual genes as well as regions of the genome which were activated were determined. PRINCIPAL FINDINGS: A number of genes known to be involved in the specification of dopaminergic neurons, including MSX1, CDKN1C, Pitx1 and Pitx2, as well as several novel genes not previously associated with dopaminergic differentiation, were expressed. Notably, we found that a specific region of the genome located on chromosome 11p15.5 was highly activated. This region contains several genes which have previously been associated with the function of dopaminergic neurons, including the gene for tyrosine hydroxylase (TH), the rate-limiting enzyme in catecholamine biosynthesis, IGF2, and CDKN1C, which cooperates with Nurr1 in directing the differentiation of dopaminergic neurons. Other genes in this region not previously recognized as being involved in the functions of dopaminergic neurons were also activated, including H19, TSSC4, and HBG2. IGF2 and CDKN1C were also found to be highly expressed in mature human TH-positive dopamine neurons isolated from human brain samples by laser capture. CONCLUSIONS: The present data suggest that the H19-IGF2 imprinting region on chromosome 11p15.5 is involved in the process through which undifferentiated cells are specified to become neuronal precursors and/or dopaminergic neurons.
format Text
id pubmed-2170519
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-21705192008-01-09 Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons Freed, William J. Chen, Jia Bäckman, Cristina M. Schwartz, Catherine M. Vazin, Tandis Cai, Jingli Spivak, Charles E. Lupica, Carl R. Rao, Mahendra S. Zeng, Xianmin PLoS One Research Article BACKGROUND: We initiated differentiation of human embryonic stem cells (hESCs) into dopamine neurons, obtained a purified population of neuronal precursor cells by cell sorting, and determined patterns of gene transcription. METHODOLOGY: Dopaminergic differentiation of hESCs was initiated by culturing hESCs with a feeder layer of PA6 cells. Differentiating cells were then sorted to obtain a pure population of PSA-NCAM-expressing neuronal precursors, which were then analyzed for gene expression using Massive Parallel Signature Sequencing (MPSS). Individual genes as well as regions of the genome which were activated were determined. PRINCIPAL FINDINGS: A number of genes known to be involved in the specification of dopaminergic neurons, including MSX1, CDKN1C, Pitx1 and Pitx2, as well as several novel genes not previously associated with dopaminergic differentiation, were expressed. Notably, we found that a specific region of the genome located on chromosome 11p15.5 was highly activated. This region contains several genes which have previously been associated with the function of dopaminergic neurons, including the gene for tyrosine hydroxylase (TH), the rate-limiting enzyme in catecholamine biosynthesis, IGF2, and CDKN1C, which cooperates with Nurr1 in directing the differentiation of dopaminergic neurons. Other genes in this region not previously recognized as being involved in the functions of dopaminergic neurons were also activated, including H19, TSSC4, and HBG2. IGF2 and CDKN1C were also found to be highly expressed in mature human TH-positive dopamine neurons isolated from human brain samples by laser capture. CONCLUSIONS: The present data suggest that the H19-IGF2 imprinting region on chromosome 11p15.5 is involved in the process through which undifferentiated cells are specified to become neuronal precursors and/or dopaminergic neurons. Public Library of Science 2008-01-09 /pmc/articles/PMC2170519/ /pubmed/18183302 http://dx.doi.org/10.1371/journal.pone.0001422 Text en This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Freed, William J.
Chen, Jia
Bäckman, Cristina M.
Schwartz, Catherine M.
Vazin, Tandis
Cai, Jingli
Spivak, Charles E.
Lupica, Carl R.
Rao, Mahendra S.
Zeng, Xianmin
Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons
title Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons
title_full Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons
title_fullStr Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons
title_full_unstemmed Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons
title_short Gene Expression Profile of Neuronal Progenitor Cells Derived from hESCs: Activation of Chromosome 11p15.5 and Comparison to Human Dopaminergic Neurons
title_sort gene expression profile of neuronal progenitor cells derived from hescs: activation of chromosome 11p15.5 and comparison to human dopaminergic neurons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2170519/
https://www.ncbi.nlm.nih.gov/pubmed/18183302
http://dx.doi.org/10.1371/journal.pone.0001422
work_keys_str_mv AT freedwilliamj geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT chenjia geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT backmancristinam geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT schwartzcatherinem geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT vazintandis geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT caijingli geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT spivakcharlese geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT lupicacarlr geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT raomahendras geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons
AT zengxianmin geneexpressionprofileofneuronalprogenitorcellsderivedfromhescsactivationofchromosome11p155andcomparisontohumandopaminergicneurons