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Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism

The ligation of DNA double-strand breaks in the process of non-homologous end-joining (NHEJ) is accomplished by a heterodimeric enzyme complex consisting of DNA ligase IV and an associated non-catalytic factor. This DNA ligase also accounts for the fatal joining of unprotected telomere ends. Hence,...

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Autores principales: Herrmann, Gernot, Kais, Sanja, Hoffbauer, Jan, Shah-Hosseini, Kijwasch, Brüggenolte, Nicole, Schober, Heiko, Fäsi, Margaret, Schär, Primo
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1874655/
https://www.ncbi.nlm.nih.gov/pubmed/17389648
http://dx.doi.org/10.1093/nar/gkm127
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author Herrmann, Gernot
Kais, Sanja
Hoffbauer, Jan
Shah-Hosseini, Kijwasch
Brüggenolte, Nicole
Schober, Heiko
Fäsi, Margaret
Schär, Primo
author_facet Herrmann, Gernot
Kais, Sanja
Hoffbauer, Jan
Shah-Hosseini, Kijwasch
Brüggenolte, Nicole
Schober, Heiko
Fäsi, Margaret
Schär, Primo
author_sort Herrmann, Gernot
collection PubMed
description The ligation of DNA double-strand breaks in the process of non-homologous end-joining (NHEJ) is accomplished by a heterodimeric enzyme complex consisting of DNA ligase IV and an associated non-catalytic factor. This DNA ligase also accounts for the fatal joining of unprotected telomere ends. Hence, its activity must be tightly controlled. Here, we describe interactions of the DNA ligase IV-associated proteins Lif1p and XRCC4 of yeast and human with the putatively orthologous G-patch proteins Ntr1p/Spp382p and NTR1/TFIP11 that have recently been implicated in mRNA splicing. These conserved interactions occupy the DNA ligase IV-binding sites of Lif1p and XRCC4, thus preventing the formation of an active enzyme complex. Consistently, an excess of Ntr1p in yeast reduces NHEJ efficiency in a plasmid ligation assay as well as in a chromosomal double-strand break repair (DSBR) assay. Both yeast and human NTR1 also interact with PinX1, another G-patch protein that has dual functions in the regulation of telomerase activity and telomere stability, and in RNA processing. Like PinX1, NTR1 localizes to telomeres and associates with nucleoli in yeast and human cells, suggesting a function in localized control of DSBR.
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spelling pubmed-18746552007-05-25 Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism Herrmann, Gernot Kais, Sanja Hoffbauer, Jan Shah-Hosseini, Kijwasch Brüggenolte, Nicole Schober, Heiko Fäsi, Margaret Schär, Primo Nucleic Acids Res Molecular Biology The ligation of DNA double-strand breaks in the process of non-homologous end-joining (NHEJ) is accomplished by a heterodimeric enzyme complex consisting of DNA ligase IV and an associated non-catalytic factor. This DNA ligase also accounts for the fatal joining of unprotected telomere ends. Hence, its activity must be tightly controlled. Here, we describe interactions of the DNA ligase IV-associated proteins Lif1p and XRCC4 of yeast and human with the putatively orthologous G-patch proteins Ntr1p/Spp382p and NTR1/TFIP11 that have recently been implicated in mRNA splicing. These conserved interactions occupy the DNA ligase IV-binding sites of Lif1p and XRCC4, thus preventing the formation of an active enzyme complex. Consistently, an excess of Ntr1p in yeast reduces NHEJ efficiency in a plasmid ligation assay as well as in a chromosomal double-strand break repair (DSBR) assay. Both yeast and human NTR1 also interact with PinX1, another G-patch protein that has dual functions in the regulation of telomerase activity and telomere stability, and in RNA processing. Like PinX1, NTR1 localizes to telomeres and associates with nucleoli in yeast and human cells, suggesting a function in localized control of DSBR. Oxford University Press 2007-04 2007-03-27 /pmc/articles/PMC1874655/ /pubmed/17389648 http://dx.doi.org/10.1093/nar/gkm127 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 Molecular Biology
Herrmann, Gernot
Kais, Sanja
Hoffbauer, Jan
Shah-Hosseini, Kijwasch
Brüggenolte, Nicole
Schober, Heiko
Fäsi, Margaret
Schär, Primo
Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism
title Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism
title_full Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism
title_fullStr Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism
title_full_unstemmed Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism
title_short Conserved interactions of the splicing factor Ntr1/Spp382 with proteins involved in DNA double-strand break repair and telomere metabolism
title_sort conserved interactions of the splicing factor ntr1/spp382 with proteins involved in dna double-strand break repair and telomere metabolism
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1874655/
https://www.ncbi.nlm.nih.gov/pubmed/17389648
http://dx.doi.org/10.1093/nar/gkm127
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