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Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis

We report on the derivation of a diploid 46(XX) human embryonic stem cell (HESC) line that is homozygous for the common deletion associated with Spinal muscular atrophy type 1 (SMA) from a pathenogenetic embryo. By characterizing the methylation status of three different imprinted loci (MEST, SNRPN...

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Autores principales: Epsztejn-Litman, Silvina, Cohen-Hadad, Yaara, Aharoni, Shira, Altarescu, Gheona, Renbaum, Paul, Levy-Lahad, Ephrat, Schonberger, Oshrat, Eldar-Geva, Talia, Zeligson, Sharon, Eiges, Rachel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4608834/
https://www.ncbi.nlm.nih.gov/pubmed/26473610
http://dx.doi.org/10.1371/journal.pone.0138893
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author Epsztejn-Litman, Silvina
Cohen-Hadad, Yaara
Aharoni, Shira
Altarescu, Gheona
Renbaum, Paul
Levy-Lahad, Ephrat
Schonberger, Oshrat
Eldar-Geva, Talia
Zeligson, Sharon
Eiges, Rachel
author_facet Epsztejn-Litman, Silvina
Cohen-Hadad, Yaara
Aharoni, Shira
Altarescu, Gheona
Renbaum, Paul
Levy-Lahad, Ephrat
Schonberger, Oshrat
Eldar-Geva, Talia
Zeligson, Sharon
Eiges, Rachel
author_sort Epsztejn-Litman, Silvina
collection PubMed
description We report on the derivation of a diploid 46(XX) human embryonic stem cell (HESC) line that is homozygous for the common deletion associated with Spinal muscular atrophy type 1 (SMA) from a pathenogenetic embryo. By characterizing the methylation status of three different imprinted loci (MEST, SNRPN and H19), monitoring the expression of two parentally imprinted genes (SNRPN and H19) and carrying out genome-wide SNP analysis, we provide evidence that this cell line was established from the activation of a mutant oocyte by diploidization of the entire genome. Therefore, our SMA parthenogenetic HESC (pHESC) line provides a proof-of-principle for the establishment of diseased HESC lines without the need for gene manipulation. As mutant oocytes are easily obtained and readily available during preimplantation genetic diagnosis (PGD) cycles, this approach should provide a powerful tool for disease modelling and is especially advantageous since it can be used to induce large or complex mutations in HESCs, including gross DNA alterations and chromosomal rearrangements, which are otherwise hard to achieve.
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spelling pubmed-46088342015-10-29 Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis Epsztejn-Litman, Silvina Cohen-Hadad, Yaara Aharoni, Shira Altarescu, Gheona Renbaum, Paul Levy-Lahad, Ephrat Schonberger, Oshrat Eldar-Geva, Talia Zeligson, Sharon Eiges, Rachel PLoS One Research Article We report on the derivation of a diploid 46(XX) human embryonic stem cell (HESC) line that is homozygous for the common deletion associated with Spinal muscular atrophy type 1 (SMA) from a pathenogenetic embryo. By characterizing the methylation status of three different imprinted loci (MEST, SNRPN and H19), monitoring the expression of two parentally imprinted genes (SNRPN and H19) and carrying out genome-wide SNP analysis, we provide evidence that this cell line was established from the activation of a mutant oocyte by diploidization of the entire genome. Therefore, our SMA parthenogenetic HESC (pHESC) line provides a proof-of-principle for the establishment of diseased HESC lines without the need for gene manipulation. As mutant oocytes are easily obtained and readily available during preimplantation genetic diagnosis (PGD) cycles, this approach should provide a powerful tool for disease modelling and is especially advantageous since it can be used to induce large or complex mutations in HESCs, including gross DNA alterations and chromosomal rearrangements, which are otherwise hard to achieve. Public Library of Science 2015-10-16 /pmc/articles/PMC4608834/ /pubmed/26473610 http://dx.doi.org/10.1371/journal.pone.0138893 Text en © 2015 Epsztejn-Litman et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Epsztejn-Litman, Silvina
Cohen-Hadad, Yaara
Aharoni, Shira
Altarescu, Gheona
Renbaum, Paul
Levy-Lahad, Ephrat
Schonberger, Oshrat
Eldar-Geva, Talia
Zeligson, Sharon
Eiges, Rachel
Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis
title Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis
title_full Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis
title_fullStr Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis
title_full_unstemmed Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis
title_short Establishment of Homozygote Mutant Human Embryonic Stem Cells by Parthenogenesis
title_sort establishment of homozygote mutant human embryonic stem cells by parthenogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4608834/
https://www.ncbi.nlm.nih.gov/pubmed/26473610
http://dx.doi.org/10.1371/journal.pone.0138893
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