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Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system

Termination of transcription is a key process in the regulation of mitochondrial gene expression in animal cells. To investigate transcription termination in sea urchin mitochondria, we cloned the mitochondrial RNA polymerase (mtRNAP) of Paracentrotus lividus and used a recombinant form of the enzym...

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Autores principales: Polosa, Paola Loguercio, Deceglie, Stefania, Falkenberg, Maria, Roberti, Marina, Di Ponzio, Barbara, Gadaleta, Maria Nicola, Cantatore, Palmiro
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1874651/
https://www.ncbi.nlm.nih.gov/pubmed/17392338
http://dx.doi.org/10.1093/nar/gkm159
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author Polosa, Paola Loguercio
Deceglie, Stefania
Falkenberg, Maria
Roberti, Marina
Di Ponzio, Barbara
Gadaleta, Maria Nicola
Cantatore, Palmiro
author_facet Polosa, Paola Loguercio
Deceglie, Stefania
Falkenberg, Maria
Roberti, Marina
Di Ponzio, Barbara
Gadaleta, Maria Nicola
Cantatore, Palmiro
author_sort Polosa, Paola Loguercio
collection PubMed
description Termination of transcription is a key process in the regulation of mitochondrial gene expression in animal cells. To investigate transcription termination in sea urchin mitochondria, we cloned the mitochondrial RNA polymerase (mtRNAP) of Paracentrotus lividus and used a recombinant form of the enzyme in a reconstituted transcription system, in the presence of the DNA-binding protein mtDBP. Cloning of mtRNAP was performed by a combination of PCR with degenerate primers and library screening. The enzyme contains 10 phage-like conserved motifs, two pentatricopeptide motifs and a serine-rich stretch. The protein expressed in insect cells supports transcription elongation in a promoter-independent assay. Addition of recombinant mtDBP caused arrest of the transcribing mtRNAP when the enzyme approached the mtDBP-binding site in the direction of transcription of mtDNA l-strand. When the polymerase encountered the protein-binding site in the opposite direction, termination occurred in a protein-independent manner, inside the mtDBP-binding site. Pulse-chase experiments show that mtDBP caused true transcription termination rather than pausing. These data indicate that mtDBP acts as polar termination factor and suggest that transcription termination in sea urchin mitochondria could take place by two alternative modes based on protein-mediated or sequence-dependent mechanisms.
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spelling pubmed-18746512007-05-25 Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system Polosa, Paola Loguercio Deceglie, Stefania Falkenberg, Maria Roberti, Marina Di Ponzio, Barbara Gadaleta, Maria Nicola Cantatore, Palmiro Nucleic Acids Res Nucleic Acid Enzymes Termination of transcription is a key process in the regulation of mitochondrial gene expression in animal cells. To investigate transcription termination in sea urchin mitochondria, we cloned the mitochondrial RNA polymerase (mtRNAP) of Paracentrotus lividus and used a recombinant form of the enzyme in a reconstituted transcription system, in the presence of the DNA-binding protein mtDBP. Cloning of mtRNAP was performed by a combination of PCR with degenerate primers and library screening. The enzyme contains 10 phage-like conserved motifs, two pentatricopeptide motifs and a serine-rich stretch. The protein expressed in insect cells supports transcription elongation in a promoter-independent assay. Addition of recombinant mtDBP caused arrest of the transcribing mtRNAP when the enzyme approached the mtDBP-binding site in the direction of transcription of mtDNA l-strand. When the polymerase encountered the protein-binding site in the opposite direction, termination occurred in a protein-independent manner, inside the mtDBP-binding site. Pulse-chase experiments show that mtDBP caused true transcription termination rather than pausing. These data indicate that mtDBP acts as polar termination factor and suggest that transcription termination in sea urchin mitochondria could take place by two alternative modes based on protein-mediated or sequence-dependent mechanisms. Oxford University Press 2007-04 2007-03-28 /pmc/articles/PMC1874651/ /pubmed/17392338 http://dx.doi.org/10.1093/nar/gkm159 Text en © 2007 The Author(s) This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Nucleic Acid Enzymes
Polosa, Paola Loguercio
Deceglie, Stefania
Falkenberg, Maria
Roberti, Marina
Di Ponzio, Barbara
Gadaleta, Maria Nicola
Cantatore, Palmiro
Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system
title Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system
title_full Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system
title_fullStr Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system
title_full_unstemmed Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system
title_short Cloning of the sea urchin mitochondrial RNA polymerase and reconstitution of the transcription termination system
title_sort cloning of the sea urchin mitochondrial rna polymerase and reconstitution of the transcription termination system
topic Nucleic Acid Enzymes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1874651/
https://www.ncbi.nlm.nih.gov/pubmed/17392338
http://dx.doi.org/10.1093/nar/gkm159
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