Cargando…

Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation

BACKGROUND: Lamins A and C, encoded by the LMNA gene, are filamentous proteins that form the core scaffold of the nuclear lamina. Dominant LMNA gene mutations cause multiple human diseases including cardiac and skeletal myopathies. The nuclear lamina is thought to regulate gene expression by its dir...

Descripción completa

Detalles Bibliográficos
Autores principales: Mewborn, Stephanie K., Puckelwartz, Megan J., Abuisneineh, Fida, Fahrenbach, John P., Zhang, Yuan, MacLeod, Heather, Dellefave, Lisa, Pytel, Peter, Selig, Sara, Labno, Christine M., Reddy, Karen, Singh, Harinder, McNally, Elizabeth
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3001866/
https://www.ncbi.nlm.nih.gov/pubmed/21179469
http://dx.doi.org/10.1371/journal.pone.0014342
_version_ 1782193664694419456
author Mewborn, Stephanie K.
Puckelwartz, Megan J.
Abuisneineh, Fida
Fahrenbach, John P.
Zhang, Yuan
MacLeod, Heather
Dellefave, Lisa
Pytel, Peter
Selig, Sara
Labno, Christine M.
Reddy, Karen
Singh, Harinder
McNally, Elizabeth
author_facet Mewborn, Stephanie K.
Puckelwartz, Megan J.
Abuisneineh, Fida
Fahrenbach, John P.
Zhang, Yuan
MacLeod, Heather
Dellefave, Lisa
Pytel, Peter
Selig, Sara
Labno, Christine M.
Reddy, Karen
Singh, Harinder
McNally, Elizabeth
author_sort Mewborn, Stephanie K.
collection PubMed
description BACKGROUND: Lamins A and C, encoded by the LMNA gene, are filamentous proteins that form the core scaffold of the nuclear lamina. Dominant LMNA gene mutations cause multiple human diseases including cardiac and skeletal myopathies. The nuclear lamina is thought to regulate gene expression by its direct interaction with chromatin. LMNA gene mutations may mediate disease by disrupting normal gene expression. METHODS/FINDINGS: To investigate the hypothesis that mutant lamin A/C changes the lamina's ability to interact with chromatin, we studied gene misexpression resulting from the cardiomyopathic LMNA E161K mutation and correlated this with changes in chromosome positioning. We identified clusters of misexpressed genes and examined the nuclear positioning of two such genomic clusters, each harboring genes relevant to striated muscle disease including LMO7 and MBNL2. Both gene clusters were found to be more centrally positioned in LMNA-mutant nuclei. Additionally, these loci were less compacted. In LMNA mutant heart and fibroblasts, we found that chromosome 13 had a disproportionately high fraction of misexpressed genes. Using three-dimensional fluorescence in situ hybridization we found that the entire territory of chromosome 13 was displaced towards the center of the nucleus in LMNA mutant fibroblasts. Additional cardiomyopathic LMNA gene mutations were also shown to have abnormal positioning of chromosome 13, although in the opposite direction. CONCLUSIONS: These data support a model in which LMNA mutations perturb the intranuclear positioning and compaction of chromosomal domains and provide a mechanism by which gene expression may be altered.
format Text
id pubmed-3001866
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30018662010-12-21 Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation Mewborn, Stephanie K. Puckelwartz, Megan J. Abuisneineh, Fida Fahrenbach, John P. Zhang, Yuan MacLeod, Heather Dellefave, Lisa Pytel, Peter Selig, Sara Labno, Christine M. Reddy, Karen Singh, Harinder McNally, Elizabeth PLoS One Research Article BACKGROUND: Lamins A and C, encoded by the LMNA gene, are filamentous proteins that form the core scaffold of the nuclear lamina. Dominant LMNA gene mutations cause multiple human diseases including cardiac and skeletal myopathies. The nuclear lamina is thought to regulate gene expression by its direct interaction with chromatin. LMNA gene mutations may mediate disease by disrupting normal gene expression. METHODS/FINDINGS: To investigate the hypothesis that mutant lamin A/C changes the lamina's ability to interact with chromatin, we studied gene misexpression resulting from the cardiomyopathic LMNA E161K mutation and correlated this with changes in chromosome positioning. We identified clusters of misexpressed genes and examined the nuclear positioning of two such genomic clusters, each harboring genes relevant to striated muscle disease including LMO7 and MBNL2. Both gene clusters were found to be more centrally positioned in LMNA-mutant nuclei. Additionally, these loci were less compacted. In LMNA mutant heart and fibroblasts, we found that chromosome 13 had a disproportionately high fraction of misexpressed genes. Using three-dimensional fluorescence in situ hybridization we found that the entire territory of chromosome 13 was displaced towards the center of the nucleus in LMNA mutant fibroblasts. Additional cardiomyopathic LMNA gene mutations were also shown to have abnormal positioning of chromosome 13, although in the opposite direction. CONCLUSIONS: These data support a model in which LMNA mutations perturb the intranuclear positioning and compaction of chromosomal domains and provide a mechanism by which gene expression may be altered. Public Library of Science 2010-12-14 /pmc/articles/PMC3001866/ /pubmed/21179469 http://dx.doi.org/10.1371/journal.pone.0014342 Text en Mewborn 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
Mewborn, Stephanie K.
Puckelwartz, Megan J.
Abuisneineh, Fida
Fahrenbach, John P.
Zhang, Yuan
MacLeod, Heather
Dellefave, Lisa
Pytel, Peter
Selig, Sara
Labno, Christine M.
Reddy, Karen
Singh, Harinder
McNally, Elizabeth
Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation
title Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation
title_full Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation
title_fullStr Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation
title_full_unstemmed Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation
title_short Altered Chromosomal Positioning, Compaction, and Gene Expression with a Lamin A/C Gene Mutation
title_sort altered chromosomal positioning, compaction, and gene expression with a lamin a/c gene mutation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3001866/
https://www.ncbi.nlm.nih.gov/pubmed/21179469
http://dx.doi.org/10.1371/journal.pone.0014342
work_keys_str_mv AT mewbornstephaniek alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT puckelwartzmeganj alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT abuisneinehfida alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT fahrenbachjohnp alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT zhangyuan alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT macleodheather alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT dellefavelisa alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT pytelpeter alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT seligsara alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT labnochristinem alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT reddykaren alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT singhharinder alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation
AT mcnallyelizabeth alteredchromosomalpositioningcompactionandgeneexpressionwithalaminacgenemutation