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Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo

Embryonic stem (ES) cells have immortality for self-renewal and pluripotency. Differentiated human cells undergo replicative senescence. In human, the telomerase reverse transcriptase (Tert), namely the catalytic subunit of telomerase, exhibits differential expression to regulate telomerase activity...

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Autores principales: Rao, Feng, Wang, Tiansu, Li, Mingyou, Li, Zhendong, Hong, Ni, Zhao, Haobin, Yan, Yan, Lu, Wenqing, Chen, Tiansheng, Wang, Weijia, Lim, Menghuat, Yuan, Yongming, Liu, Ling, Zeng, Lingbing, Wei, Qiwei, Guan, Guijun, Li, Changming, Hong, Yunhan
Formato: Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3088285/
https://www.ncbi.nlm.nih.gov/pubmed/21547060
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author Rao, Feng
Wang, Tiansu
Li, Mingyou
Li, Zhendong
Hong, Ni
Zhao, Haobin
Yan, Yan
Lu, Wenqing
Chen, Tiansheng
Wang, Weijia
Lim, Menghuat
Yuan, Yongming
Liu, Ling
Zeng, Lingbing
Wei, Qiwei
Guan, Guijun
Li, Changming
Hong, Yunhan
author_facet Rao, Feng
Wang, Tiansu
Li, Mingyou
Li, Zhendong
Hong, Ni
Zhao, Haobin
Yan, Yan
Lu, Wenqing
Chen, Tiansheng
Wang, Weijia
Lim, Menghuat
Yuan, Yongming
Liu, Ling
Zeng, Lingbing
Wei, Qiwei
Guan, Guijun
Li, Changming
Hong, Yunhan
author_sort Rao, Feng
collection PubMed
description Embryonic stem (ES) cells have immortality for self-renewal and pluripotency. Differentiated human cells undergo replicative senescence. In human, the telomerase reverse transcriptase (Tert), namely the catalytic subunit of telomerase, exhibits differential expression to regulate telomerase activity governing cellular immortality or senescence, and telomerase activity or tert expression is a routine marker of pluripotent ES cells. Here we have identified the medaka tert gene and determined its expression and telomerase activity in vivo and in vitro. We found that the medaka tert locus produces five variants called terta to terte encoding isoforms TertA to TertE. The longest TertA consists of 1090 amino acid residues and displays a maximum of 34% identity to the human TERT and all the signature motifs of the Tert family. TertB to TertE are novel isoforms and have considerable truncation due to alternative splicing. The terta RNA is ubiquitous in embryos, adult tissues and cell lines, and accompanies ubiquitous telomerase activity in vivo and in vitro as revealed by TRAP assays. The tertb RNA was restricted to the testis, absent in embryos before gastrulation and barely detectable in various cell lines The tertc transcript was absent in undifferentiated ES cells but became evident upon ES cell differentiation, in vivo it was barely detectable in early embryos and became evident when embryogenesis proceeds. Therefore, ubiquitous terta expression correlates with ubiquitous telomerase activity in medaka, and expression of other tert variants appears to delineate cell differentiation in vitro and in vivo.
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spelling pubmed-30882852011-05-05 Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo Rao, Feng Wang, Tiansu Li, Mingyou Li, Zhendong Hong, Ni Zhao, Haobin Yan, Yan Lu, Wenqing Chen, Tiansheng Wang, Weijia Lim, Menghuat Yuan, Yongming Liu, Ling Zeng, Lingbing Wei, Qiwei Guan, Guijun Li, Changming Hong, Yunhan Int J Biol Sci Research Paper Embryonic stem (ES) cells have immortality for self-renewal and pluripotency. Differentiated human cells undergo replicative senescence. In human, the telomerase reverse transcriptase (Tert), namely the catalytic subunit of telomerase, exhibits differential expression to regulate telomerase activity governing cellular immortality or senescence, and telomerase activity or tert expression is a routine marker of pluripotent ES cells. Here we have identified the medaka tert gene and determined its expression and telomerase activity in vivo and in vitro. We found that the medaka tert locus produces five variants called terta to terte encoding isoforms TertA to TertE. The longest TertA consists of 1090 amino acid residues and displays a maximum of 34% identity to the human TERT and all the signature motifs of the Tert family. TertB to TertE are novel isoforms and have considerable truncation due to alternative splicing. The terta RNA is ubiquitous in embryos, adult tissues and cell lines, and accompanies ubiquitous telomerase activity in vivo and in vitro as revealed by TRAP assays. The tertb RNA was restricted to the testis, absent in embryos before gastrulation and barely detectable in various cell lines The tertc transcript was absent in undifferentiated ES cells but became evident upon ES cell differentiation, in vivo it was barely detectable in early embryos and became evident when embryogenesis proceeds. Therefore, ubiquitous terta expression correlates with ubiquitous telomerase activity in medaka, and expression of other tert variants appears to delineate cell differentiation in vitro and in vivo. Ivyspring International Publisher 2011-04-15 /pmc/articles/PMC3088285/ /pubmed/21547060 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
Rao, Feng
Wang, Tiansu
Li, Mingyou
Li, Zhendong
Hong, Ni
Zhao, Haobin
Yan, Yan
Lu, Wenqing
Chen, Tiansheng
Wang, Weijia
Lim, Menghuat
Yuan, Yongming
Liu, Ling
Zeng, Lingbing
Wei, Qiwei
Guan, Guijun
Li, Changming
Hong, Yunhan
Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
title Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
title_full Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
title_fullStr Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
title_full_unstemmed Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
title_short Medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
title_sort medaka tert produces multiple variants with differential expression during differentiation in vitro and in vivo
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3088285/
https://www.ncbi.nlm.nih.gov/pubmed/21547060
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