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Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress

The recessive lethal mutation flotte lotte (flo) disrupts development of the zebrafish digestive system and other tissues. We show that flo encodes the ortholog of Mel-28/Elys, a highly conserved gene that has been shown to be required for nuclear integrity in worms and nuclear pore complex (NPC) as...

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Autores principales: Davuluri, Gangarao, Gong, Weilong, Yusuff, Shamila, Lorent, Kristin, Muthumani, Manimegalai, Dolan, Amy C., Pack, Michael
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2570612/
https://www.ncbi.nlm.nih.gov/pubmed/18974873
http://dx.doi.org/10.1371/journal.pgen.1000240
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author Davuluri, Gangarao
Gong, Weilong
Yusuff, Shamila
Lorent, Kristin
Muthumani, Manimegalai
Dolan, Amy C.
Pack, Michael
author_facet Davuluri, Gangarao
Gong, Weilong
Yusuff, Shamila
Lorent, Kristin
Muthumani, Manimegalai
Dolan, Amy C.
Pack, Michael
author_sort Davuluri, Gangarao
collection PubMed
description The recessive lethal mutation flotte lotte (flo) disrupts development of the zebrafish digestive system and other tissues. We show that flo encodes the ortholog of Mel-28/Elys, a highly conserved gene that has been shown to be required for nuclear integrity in worms and nuclear pore complex (NPC) assembly in amphibian and mammalian cells. Maternal elys expression sustains zebrafish flo mutants to larval stages when cells in proliferative tissues that lack nuclear pores undergo cell cycle arrest and apoptosis. p53 mutation rescues apoptosis in the flo retina and optic tectum, but not in the intestine, where the checkpoint kinase Chk2 is activated. Chk2 inhibition and replication stress induced by DNA synthesis inhibitors were lethal to flo larvae. By contrast, flo mutants were not sensitized to agents that cause DNA double strand breaks, thus showing that loss of Elys disrupts responses to selected replication inhibitors. Elys binds Mcm2-7 complexes derived from Xenopus egg extracts. Mutation of elys reduced chromatin binding of Mcm2, but not binding of Mcm3 or Mcm4 in the flo intestine. These in vivo data indicate a role for Elys in Mcm2-chromatin interactions. Furthermore, they support a recently proposed model in which replication origins licensed by excess Mcm2-7 are required for the survival of human cells exposed to replication stress.
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spelling pubmed-25706122008-10-31 Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress Davuluri, Gangarao Gong, Weilong Yusuff, Shamila Lorent, Kristin Muthumani, Manimegalai Dolan, Amy C. Pack, Michael PLoS Genet Research Article The recessive lethal mutation flotte lotte (flo) disrupts development of the zebrafish digestive system and other tissues. We show that flo encodes the ortholog of Mel-28/Elys, a highly conserved gene that has been shown to be required for nuclear integrity in worms and nuclear pore complex (NPC) assembly in amphibian and mammalian cells. Maternal elys expression sustains zebrafish flo mutants to larval stages when cells in proliferative tissues that lack nuclear pores undergo cell cycle arrest and apoptosis. p53 mutation rescues apoptosis in the flo retina and optic tectum, but not in the intestine, where the checkpoint kinase Chk2 is activated. Chk2 inhibition and replication stress induced by DNA synthesis inhibitors were lethal to flo larvae. By contrast, flo mutants were not sensitized to agents that cause DNA double strand breaks, thus showing that loss of Elys disrupts responses to selected replication inhibitors. Elys binds Mcm2-7 complexes derived from Xenopus egg extracts. Mutation of elys reduced chromatin binding of Mcm2, but not binding of Mcm3 or Mcm4 in the flo intestine. These in vivo data indicate a role for Elys in Mcm2-chromatin interactions. Furthermore, they support a recently proposed model in which replication origins licensed by excess Mcm2-7 are required for the survival of human cells exposed to replication stress. Public Library of Science 2008-10-31 /pmc/articles/PMC2570612/ /pubmed/18974873 http://dx.doi.org/10.1371/journal.pgen.1000240 Text en Davuluri 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
Davuluri, Gangarao
Gong, Weilong
Yusuff, Shamila
Lorent, Kristin
Muthumani, Manimegalai
Dolan, Amy C.
Pack, Michael
Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress
title Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress
title_full Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress
title_fullStr Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress
title_full_unstemmed Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress
title_short Mutation of the Zebrafish Nucleoporin elys Sensitizes Tissue Progenitors to Replication Stress
title_sort mutation of the zebrafish nucleoporin elys sensitizes tissue progenitors to replication stress
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2570612/
https://www.ncbi.nlm.nih.gov/pubmed/18974873
http://dx.doi.org/10.1371/journal.pgen.1000240
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