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Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids

During early zebrafish (Danio rerio) development zygotic transcription does not begin until the mid-blastula transition (MBT) ∼3 h after fertilization. MBT demarcates transition from synchronous short cell cycles of S and M phases exclusively to full cycles encompassing G(1) and G(2) phases. Transcr...

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Autores principales: Duffy, Kevin T., McAleer, Mary Frances, Davidson, William R., Kari, Laszlo, Kari, Csaba, Liu, Chang-Gong, Farber, Steven A., Cheng, Keith C., Mest, Jason R., Wickstrom, Eric, Dicker, Adam P., Rodeck, Ulrich
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1199556/
https://www.ncbi.nlm.nih.gov/pubmed/16284195
http://dx.doi.org/10.1093/nar/gki799
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author Duffy, Kevin T.
McAleer, Mary Frances
Davidson, William R.
Kari, Laszlo
Kari, Csaba
Liu, Chang-Gong
Farber, Steven A.
Cheng, Keith C.
Mest, Jason R.
Wickstrom, Eric
Dicker, Adam P.
Rodeck, Ulrich
author_facet Duffy, Kevin T.
McAleer, Mary Frances
Davidson, William R.
Kari, Laszlo
Kari, Csaba
Liu, Chang-Gong
Farber, Steven A.
Cheng, Keith C.
Mest, Jason R.
Wickstrom, Eric
Dicker, Adam P.
Rodeck, Ulrich
author_sort Duffy, Kevin T.
collection PubMed
description During early zebrafish (Danio rerio) development zygotic transcription does not begin until the mid-blastula transition (MBT) ∼3 h after fertilization. MBT demarcates transition from synchronous short cell cycles of S and M phases exclusively to full cycles encompassing G(1) and G(2) phases. Transcriptional profiling and RT–PCR analyses during these phases enabled us to determine that this shift corresponds to decreased transcript levels of S/M phase cell cycle control genes (e.g. ccna2, ccnb1, ccnb2 and ccne) and increased transcript levels of ccnd1, encoding cyclin D1, and orthologs of p21 (p21-like) and retinoblastoma (Rb-like 1). To investigate the regulation of this process further, the translation of ccnd1 mRNA, a G(1)/S checkpoint control element, was impaired by microinjection of ccnd1-specific morpholino phosphorodiamidate (MO) 20mer or hydroxyprolyl-phosphono peptide nucleic acid (HypNA-pPNA) 16mer antisense oligonucleotides. The resulting downregulation of cyclin D1 protein resulted in microophthalmia and microcephaly, but not lethality. The phenotypes were not seen with 3-mismatch MO 20mers or 1-mismatch HypNA-pPNA 16mers, and were rescued by an exogenous ccnd1 mRNA construct with five mismatches. Collectively, these results indicate that transcription of key molecular determinants of asynchronous cell cycle control in zebrafish embryos commences at MBT and that the reduction of cyclin D1 expression compromises zebrafish eye and head development.
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spelling pubmed-11995562005-09-08 Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids Duffy, Kevin T. McAleer, Mary Frances Davidson, William R. Kari, Laszlo Kari, Csaba Liu, Chang-Gong Farber, Steven A. Cheng, Keith C. Mest, Jason R. Wickstrom, Eric Dicker, Adam P. Rodeck, Ulrich Nucleic Acids Res Article During early zebrafish (Danio rerio) development zygotic transcription does not begin until the mid-blastula transition (MBT) ∼3 h after fertilization. MBT demarcates transition from synchronous short cell cycles of S and M phases exclusively to full cycles encompassing G(1) and G(2) phases. Transcriptional profiling and RT–PCR analyses during these phases enabled us to determine that this shift corresponds to decreased transcript levels of S/M phase cell cycle control genes (e.g. ccna2, ccnb1, ccnb2 and ccne) and increased transcript levels of ccnd1, encoding cyclin D1, and orthologs of p21 (p21-like) and retinoblastoma (Rb-like 1). To investigate the regulation of this process further, the translation of ccnd1 mRNA, a G(1)/S checkpoint control element, was impaired by microinjection of ccnd1-specific morpholino phosphorodiamidate (MO) 20mer or hydroxyprolyl-phosphono peptide nucleic acid (HypNA-pPNA) 16mer antisense oligonucleotides. The resulting downregulation of cyclin D1 protein resulted in microophthalmia and microcephaly, but not lethality. The phenotypes were not seen with 3-mismatch MO 20mers or 1-mismatch HypNA-pPNA 16mers, and were rescued by an exogenous ccnd1 mRNA construct with five mismatches. Collectively, these results indicate that transcription of key molecular determinants of asynchronous cell cycle control in zebrafish embryos commences at MBT and that the reduction of cyclin D1 expression compromises zebrafish eye and head development. Oxford University Press 2005 2005-09-02 /pmc/articles/PMC1199556/ /pubmed/16284195 http://dx.doi.org/10.1093/nar/gki799 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Duffy, Kevin T.
McAleer, Mary Frances
Davidson, William R.
Kari, Laszlo
Kari, Csaba
Liu, Chang-Gong
Farber, Steven A.
Cheng, Keith C.
Mest, Jason R.
Wickstrom, Eric
Dicker, Adam P.
Rodeck, Ulrich
Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
title Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
title_full Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
title_fullStr Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
title_full_unstemmed Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
title_short Coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin D1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
title_sort coordinate control of cell cycle regulatory genes in zebrafish development tested by cyclin d1 knockdown with morpholino phosphorodiamidates and hydroxyprolyl-phosphono peptide nucleic acids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1199556/
https://www.ncbi.nlm.nih.gov/pubmed/16284195
http://dx.doi.org/10.1093/nar/gki799
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