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Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication

Inverted repeats (IRs) can facilitate structural variation as crucibles of genomic rearrangement. Complex duplication—inverted triplication—duplication (DUP-TRP/INV-DUP) rearrangements that contain breakpoint junctions within IRs have been recently associated with both MECP2 duplication syndrome (MI...

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Autores principales: Beck, Christine R., Carvalho, Claudia M. B., Banser, Linda, Gambin, Tomasz, Stubbolo, Danielle, Yuan, Bo, Sperle, Karen, McCahan, Suzanne M., Henneke, Marco, Seeman, Pavel, Garbern, James Y., Hobson, Grace M., Lupski, James R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4352052/
https://www.ncbi.nlm.nih.gov/pubmed/25749076
http://dx.doi.org/10.1371/journal.pgen.1005050
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author Beck, Christine R.
Carvalho, Claudia M. B.
Banser, Linda
Gambin, Tomasz
Stubbolo, Danielle
Yuan, Bo
Sperle, Karen
McCahan, Suzanne M.
Henneke, Marco
Seeman, Pavel
Garbern, James Y.
Hobson, Grace M.
Lupski, James R.
author_facet Beck, Christine R.
Carvalho, Claudia M. B.
Banser, Linda
Gambin, Tomasz
Stubbolo, Danielle
Yuan, Bo
Sperle, Karen
McCahan, Suzanne M.
Henneke, Marco
Seeman, Pavel
Garbern, James Y.
Hobson, Grace M.
Lupski, James R.
author_sort Beck, Christine R.
collection PubMed
description Inverted repeats (IRs) can facilitate structural variation as crucibles of genomic rearrangement. Complex duplication—inverted triplication—duplication (DUP-TRP/INV-DUP) rearrangements that contain breakpoint junctions within IRs have been recently associated with both MECP2 duplication syndrome (MIM#300260) and Pelizaeus-Merzbacher disease (PMD, MIM#312080). We investigated 17 unrelated PMD subjects with copy number gains at the PLP1 locus including triplication and quadruplication of specific genomic intervals—16/17 were found to have a DUP-TRP/INV-DUP rearrangement product. An IR distal to PLP1 facilitates DUP-TRP/INV-DUP formation as well as an inversion structural variation found frequently amongst normal individuals. We show that a homology—or homeology—driven replicative mechanism of DNA repair can apparently mediate template switches within stretches of microhomology. Moreover, we provide evidence that quadruplication and potentially higher order amplification of a genomic interval can occur in a manner consistent with rolling circle amplification as predicted by the microhomology-mediated break induced replication (MMBIR) model.
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spelling pubmed-43520522015-03-17 Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication Beck, Christine R. Carvalho, Claudia M. B. Banser, Linda Gambin, Tomasz Stubbolo, Danielle Yuan, Bo Sperle, Karen McCahan, Suzanne M. Henneke, Marco Seeman, Pavel Garbern, James Y. Hobson, Grace M. Lupski, James R. PLoS Genet Research Article Inverted repeats (IRs) can facilitate structural variation as crucibles of genomic rearrangement. Complex duplication—inverted triplication—duplication (DUP-TRP/INV-DUP) rearrangements that contain breakpoint junctions within IRs have been recently associated with both MECP2 duplication syndrome (MIM#300260) and Pelizaeus-Merzbacher disease (PMD, MIM#312080). We investigated 17 unrelated PMD subjects with copy number gains at the PLP1 locus including triplication and quadruplication of specific genomic intervals—16/17 were found to have a DUP-TRP/INV-DUP rearrangement product. An IR distal to PLP1 facilitates DUP-TRP/INV-DUP formation as well as an inversion structural variation found frequently amongst normal individuals. We show that a homology—or homeology—driven replicative mechanism of DNA repair can apparently mediate template switches within stretches of microhomology. Moreover, we provide evidence that quadruplication and potentially higher order amplification of a genomic interval can occur in a manner consistent with rolling circle amplification as predicted by the microhomology-mediated break induced replication (MMBIR) model. Public Library of Science 2015-03-06 /pmc/articles/PMC4352052/ /pubmed/25749076 http://dx.doi.org/10.1371/journal.pgen.1005050 Text en © 2015 Beck 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
Beck, Christine R.
Carvalho, Claudia M. B.
Banser, Linda
Gambin, Tomasz
Stubbolo, Danielle
Yuan, Bo
Sperle, Karen
McCahan, Suzanne M.
Henneke, Marco
Seeman, Pavel
Garbern, James Y.
Hobson, Grace M.
Lupski, James R.
Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication
title Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication
title_full Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication
title_fullStr Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication
title_full_unstemmed Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication
title_short Complex Genomic Rearrangements at the PLP1 Locus Include Triplication and Quadruplication
title_sort complex genomic rearrangements at the plp1 locus include triplication and quadruplication
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4352052/
https://www.ncbi.nlm.nih.gov/pubmed/25749076
http://dx.doi.org/10.1371/journal.pgen.1005050
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