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Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming

While reprogramming a foreign nucleus after somatic cell nuclear transfer (SCNT), the enucleated oocyte (ooplasm) must signal that biomass and cellular requirements changed compared to the nucleus donor cell. Using cells expressing nuclear-encoded but mitochondria-targeted EGFP, a strategy was devel...

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Autores principales: Esteves, Telma C., Psathaki, Olympia E., Pfeiffer, Martin J., Balbach, Sebastian T., Zeuschner, Dagmar, Shitara, Hiroshi, Yonekawa, Hiromichi, Siatkowski, Marcin, Fuellen, Georg, Boiani, Michele
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3367913/
https://www.ncbi.nlm.nih.gov/pubmed/22693623
http://dx.doi.org/10.1371/journal.pone.0036850
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author Esteves, Telma C.
Psathaki, Olympia E.
Pfeiffer, Martin J.
Balbach, Sebastian T.
Zeuschner, Dagmar
Shitara, Hiroshi
Yonekawa, Hiromichi
Siatkowski, Marcin
Fuellen, Georg
Boiani, Michele
author_facet Esteves, Telma C.
Psathaki, Olympia E.
Pfeiffer, Martin J.
Balbach, Sebastian T.
Zeuschner, Dagmar
Shitara, Hiroshi
Yonekawa, Hiromichi
Siatkowski, Marcin
Fuellen, Georg
Boiani, Michele
author_sort Esteves, Telma C.
collection PubMed
description While reprogramming a foreign nucleus after somatic cell nuclear transfer (SCNT), the enucleated oocyte (ooplasm) must signal that biomass and cellular requirements changed compared to the nucleus donor cell. Using cells expressing nuclear-encoded but mitochondria-targeted EGFP, a strategy was developed to directly distinguish maternal and embryonic products, testing ooplasm demands on transcriptional and post-transcriptional activity during reprogramming. Specifically, we compared transcript and protein levels for EGFP and other products in pre-implantation SCNT embryos, side-by-side to fertilized controls (embryos produced from the same oocyte pool, by intracytoplasmic injection of sperm containing the EGFP transgene). We observed that while EGFP transcript abundance is not different, protein levels are significantly lower in SCNT compared to fertilized blastocysts. This was not observed for Gapdh and Actb, whose protein reflected mRNA. This transcript-protein relationship indicates that the somatic nucleus can keep up with ooplasm transcript demands, whilst transcription and translation mismatch occurs after SCNT for certain mRNAs. We further detected metabolic disturbances after SCNT, suggesting a place among forces regulating post-transcriptional changes during reprogramming. Our observations ascribe oocyte-induced reprogramming with previously unsuspected regulatory dimensions, in that presence of functional proteins may no longer be inferred from mRNA, but rather depend on post-transcriptional regulation possibly modulated through metabolism.
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spelling pubmed-33679132012-06-12 Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming Esteves, Telma C. Psathaki, Olympia E. Pfeiffer, Martin J. Balbach, Sebastian T. Zeuschner, Dagmar Shitara, Hiroshi Yonekawa, Hiromichi Siatkowski, Marcin Fuellen, Georg Boiani, Michele PLoS One Research Article While reprogramming a foreign nucleus after somatic cell nuclear transfer (SCNT), the enucleated oocyte (ooplasm) must signal that biomass and cellular requirements changed compared to the nucleus donor cell. Using cells expressing nuclear-encoded but mitochondria-targeted EGFP, a strategy was developed to directly distinguish maternal and embryonic products, testing ooplasm demands on transcriptional and post-transcriptional activity during reprogramming. Specifically, we compared transcript and protein levels for EGFP and other products in pre-implantation SCNT embryos, side-by-side to fertilized controls (embryos produced from the same oocyte pool, by intracytoplasmic injection of sperm containing the EGFP transgene). We observed that while EGFP transcript abundance is not different, protein levels are significantly lower in SCNT compared to fertilized blastocysts. This was not observed for Gapdh and Actb, whose protein reflected mRNA. This transcript-protein relationship indicates that the somatic nucleus can keep up with ooplasm transcript demands, whilst transcription and translation mismatch occurs after SCNT for certain mRNAs. We further detected metabolic disturbances after SCNT, suggesting a place among forces regulating post-transcriptional changes during reprogramming. Our observations ascribe oocyte-induced reprogramming with previously unsuspected regulatory dimensions, in that presence of functional proteins may no longer be inferred from mRNA, but rather depend on post-transcriptional regulation possibly modulated through metabolism. Public Library of Science 2012-06-05 /pmc/articles/PMC3367913/ /pubmed/22693623 http://dx.doi.org/10.1371/journal.pone.0036850 Text en Esteves 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
Esteves, Telma C.
Psathaki, Olympia E.
Pfeiffer, Martin J.
Balbach, Sebastian T.
Zeuschner, Dagmar
Shitara, Hiroshi
Yonekawa, Hiromichi
Siatkowski, Marcin
Fuellen, Georg
Boiani, Michele
Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming
title Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming
title_full Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming
title_fullStr Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming
title_full_unstemmed Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming
title_short Mitochondrial Physiology and Gene Expression Analyses Reveal Metabolic and Translational Dysregulation in Oocyte-Induced Somatic Nuclear Reprogramming
title_sort mitochondrial physiology and gene expression analyses reveal metabolic and translational dysregulation in oocyte-induced somatic nuclear reprogramming
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3367913/
https://www.ncbi.nlm.nih.gov/pubmed/22693623
http://dx.doi.org/10.1371/journal.pone.0036850
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