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Identification of Pluripotency Genes in the Fish Medaka

Stem cell cultures can be derived directly from early developing embryos and indirectly from differentiated cells by forced expression of pluripotency transcription factors. Pluripotency genes are routinely used to characterize mammalian stem cell cultures at the molecular level. However, such genes...

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Autores principales: Wang, Danke, Manali, Dwarakanath, Wang, Tiansu, Bhat, Narayani, Hong, Ni, Li, Zhendong, Wang, Li, Yan, Yan, Liu, Rong, Hong, Yunhan
Formato: Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3088286/
https://www.ncbi.nlm.nih.gov/pubmed/21547061
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author Wang, Danke
Manali, Dwarakanath
Wang, Tiansu
Bhat, Narayani
Hong, Ni
Li, Zhendong
Wang, Li
Yan, Yan
Liu, Rong
Hong, Yunhan
author_facet Wang, Danke
Manali, Dwarakanath
Wang, Tiansu
Bhat, Narayani
Hong, Ni
Li, Zhendong
Wang, Li
Yan, Yan
Liu, Rong
Hong, Yunhan
author_sort Wang, Danke
collection PubMed
description Stem cell cultures can be derived directly from early developing embryos and indirectly from differentiated cells by forced expression of pluripotency transcription factors. Pluripotency genes are routinely used to characterize mammalian stem cell cultures at the molecular level. However, such genes have remained unknown in lower vertebrates. In this regard, the laboratory fish medaka is uniquely suited because it has embryonic stem (ES) cells and genome sequence data. We identified seven medaka pluripotency genes by homology search and expression in vivo and in vitro. By RT-PCR analysis, the seven genes fall into three groups of expression pattern. Group I includes nanog and oct4 showing gonad-specific expression; Group II contains sall4 and zfp281 displaying gonad-preferential expression; Group III has klf4, ronin and tcf3 exhibiting expression also in several somatic tissues apart from the gonads. The transcripts of the seven genes are maternally supplied and persist at a high level during early embryogenesis. We made use of early embryos and adult gonads to examine expression in stem cells and differentiated derivatives by in situ hybridization. Strikingly, nanog and oct4 are highly expressed in pluripotent blastomeres of 16-cell embryos. In the adult testis, nanog expression was specific to spermatogonia, the germ stem cells, whereas tcf3 expression occurred in spermatogonia and differentiated cells. Most importantly, all the seven genes are pluripotency markers in vitro, because they have high expression in undifferentiated ES cells but dramatic down-regulation upon differentiation. Therefore, these genes have conserved their pluripotency-specific expression in vitro from mammals to lower vertebrates.
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spelling pubmed-30882862011-05-05 Identification of Pluripotency Genes in the Fish Medaka Wang, Danke Manali, Dwarakanath Wang, Tiansu Bhat, Narayani Hong, Ni Li, Zhendong Wang, Li Yan, Yan Liu, Rong Hong, Yunhan Int J Biol Sci Research Paper Stem cell cultures can be derived directly from early developing embryos and indirectly from differentiated cells by forced expression of pluripotency transcription factors. Pluripotency genes are routinely used to characterize mammalian stem cell cultures at the molecular level. However, such genes have remained unknown in lower vertebrates. In this regard, the laboratory fish medaka is uniquely suited because it has embryonic stem (ES) cells and genome sequence data. We identified seven medaka pluripotency genes by homology search and expression in vivo and in vitro. By RT-PCR analysis, the seven genes fall into three groups of expression pattern. Group I includes nanog and oct4 showing gonad-specific expression; Group II contains sall4 and zfp281 displaying gonad-preferential expression; Group III has klf4, ronin and tcf3 exhibiting expression also in several somatic tissues apart from the gonads. The transcripts of the seven genes are maternally supplied and persist at a high level during early embryogenesis. We made use of early embryos and adult gonads to examine expression in stem cells and differentiated derivatives by in situ hybridization. Strikingly, nanog and oct4 are highly expressed in pluripotent blastomeres of 16-cell embryos. In the adult testis, nanog expression was specific to spermatogonia, the germ stem cells, whereas tcf3 expression occurred in spermatogonia and differentiated cells. Most importantly, all the seven genes are pluripotency markers in vitro, because they have high expression in undifferentiated ES cells but dramatic down-regulation upon differentiation. Therefore, these genes have conserved their pluripotency-specific expression in vitro from mammals to lower vertebrates. Ivyspring International Publisher 2011-04-15 /pmc/articles/PMC3088286/ /pubmed/21547061 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Wang, Danke
Manali, Dwarakanath
Wang, Tiansu
Bhat, Narayani
Hong, Ni
Li, Zhendong
Wang, Li
Yan, Yan
Liu, Rong
Hong, Yunhan
Identification of Pluripotency Genes in the Fish Medaka
title Identification of Pluripotency Genes in the Fish Medaka
title_full Identification of Pluripotency Genes in the Fish Medaka
title_fullStr Identification of Pluripotency Genes in the Fish Medaka
title_full_unstemmed Identification of Pluripotency Genes in the Fish Medaka
title_short Identification of Pluripotency Genes in the Fish Medaka
title_sort identification of pluripotency genes in the fish medaka
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3088286/
https://www.ncbi.nlm.nih.gov/pubmed/21547061
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