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The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases

A cluster of imprinted genes at chromosome 11p15.5 is associated with the growth disorders, Silver–Russell syndrome (SRS) and Beckwith–Wiedemann syndrome (BWS). The cluster is divided into two domains with independent imprinting control regions (ICRs). We describe two maternal 11p15.5 microduplicati...

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Autores principales: Chiesa, Nicoletta, De Crescenzo, Agostina, Mishra, Kankadeb, Perone, Lucia, Carella, Massimo, Palumbo, Orazio, Mussa, Alessandro, Sparago, Angela, Cerrato, Flavia, Russo, Silvia, Lapi, Elisabetta, Cubellis, Maria Vittoria, Kanduri, Chandrasekhar, Cirillo Silengo, Margherita, Riccio, Andrea, Ferrero, Giovanni Battista
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3235007/
https://www.ncbi.nlm.nih.gov/pubmed/21920939
http://dx.doi.org/10.1093/hmg/ddr419
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author Chiesa, Nicoletta
De Crescenzo, Agostina
Mishra, Kankadeb
Perone, Lucia
Carella, Massimo
Palumbo, Orazio
Mussa, Alessandro
Sparago, Angela
Cerrato, Flavia
Russo, Silvia
Lapi, Elisabetta
Cubellis, Maria Vittoria
Kanduri, Chandrasekhar
Cirillo Silengo, Margherita
Riccio, Andrea
Ferrero, Giovanni Battista
author_facet Chiesa, Nicoletta
De Crescenzo, Agostina
Mishra, Kankadeb
Perone, Lucia
Carella, Massimo
Palumbo, Orazio
Mussa, Alessandro
Sparago, Angela
Cerrato, Flavia
Russo, Silvia
Lapi, Elisabetta
Cubellis, Maria Vittoria
Kanduri, Chandrasekhar
Cirillo Silengo, Margherita
Riccio, Andrea
Ferrero, Giovanni Battista
author_sort Chiesa, Nicoletta
collection PubMed
description A cluster of imprinted genes at chromosome 11p15.5 is associated with the growth disorders, Silver–Russell syndrome (SRS) and Beckwith–Wiedemann syndrome (BWS). The cluster is divided into two domains with independent imprinting control regions (ICRs). We describe two maternal 11p15.5 microduplications with contrasting phenotypes. The first is an inverted and in cis duplication of the entire 11p15.5 cluster associated with the maintenance of genomic imprinting and with the SRS phenotype. The second is a 160 kb duplication also inverted and in cis, but resulting in the imprinting alteration of the centromeric domain. It includes the centromeric ICR (ICR2) and the most 5′ 20 kb of the non-coding KCNQ1OT1 gene. Its maternal transmission is associated with ICR2 hypomethylation and the BWS phenotype. By excluding epigenetic mosaicism, cell clones analysis indicated that the two closely located ICR2 sequences resulting from the 160 kb duplication carried discordant DNA methylation on the maternal chromosome and supported the hypothesis that the ICR2 sequence is not sufficient for establishing imprinted methylation and some other property, possibly orientation-dependent, is needed. Furthermore, the 1.2 Mb duplication demonstrated that all features are present for correct imprinting at ICR2 when this is duplicated and inverted within the entire cluster. In the individuals maternally inheriting the 160 kb duplication, ICR2 hypomethylation led to the expression of a truncated KCNQ1OT1 transcript and to down-regulation of CDKN1C. We demonstrated by chromatin RNA immunopurification that the KCNQ1OT1 RNA interacts with chromatin through its most 5′ 20 kb sequence, providing a mechanism likely mediating the silencing activity of this long non-coding RNA.
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spelling pubmed-32350072011-12-14 The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases Chiesa, Nicoletta De Crescenzo, Agostina Mishra, Kankadeb Perone, Lucia Carella, Massimo Palumbo, Orazio Mussa, Alessandro Sparago, Angela Cerrato, Flavia Russo, Silvia Lapi, Elisabetta Cubellis, Maria Vittoria Kanduri, Chandrasekhar Cirillo Silengo, Margherita Riccio, Andrea Ferrero, Giovanni Battista Hum Mol Genet Articles A cluster of imprinted genes at chromosome 11p15.5 is associated with the growth disorders, Silver–Russell syndrome (SRS) and Beckwith–Wiedemann syndrome (BWS). The cluster is divided into two domains with independent imprinting control regions (ICRs). We describe two maternal 11p15.5 microduplications with contrasting phenotypes. The first is an inverted and in cis duplication of the entire 11p15.5 cluster associated with the maintenance of genomic imprinting and with the SRS phenotype. The second is a 160 kb duplication also inverted and in cis, but resulting in the imprinting alteration of the centromeric domain. It includes the centromeric ICR (ICR2) and the most 5′ 20 kb of the non-coding KCNQ1OT1 gene. Its maternal transmission is associated with ICR2 hypomethylation and the BWS phenotype. By excluding epigenetic mosaicism, cell clones analysis indicated that the two closely located ICR2 sequences resulting from the 160 kb duplication carried discordant DNA methylation on the maternal chromosome and supported the hypothesis that the ICR2 sequence is not sufficient for establishing imprinted methylation and some other property, possibly orientation-dependent, is needed. Furthermore, the 1.2 Mb duplication demonstrated that all features are present for correct imprinting at ICR2 when this is duplicated and inverted within the entire cluster. In the individuals maternally inheriting the 160 kb duplication, ICR2 hypomethylation led to the expression of a truncated KCNQ1OT1 transcript and to down-regulation of CDKN1C. We demonstrated by chromatin RNA immunopurification that the KCNQ1OT1 RNA interacts with chromatin through its most 5′ 20 kb sequence, providing a mechanism likely mediating the silencing activity of this long non-coding RNA. Oxford University Press 2012-01-01 2011-09-14 /pmc/articles/PMC3235007/ /pubmed/21920939 http://dx.doi.org/10.1093/hmg/ddr419 Text en © The Author 2011. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Chiesa, Nicoletta
De Crescenzo, Agostina
Mishra, Kankadeb
Perone, Lucia
Carella, Massimo
Palumbo, Orazio
Mussa, Alessandro
Sparago, Angela
Cerrato, Flavia
Russo, Silvia
Lapi, Elisabetta
Cubellis, Maria Vittoria
Kanduri, Chandrasekhar
Cirillo Silengo, Margherita
Riccio, Andrea
Ferrero, Giovanni Battista
The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases
title The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases
title_full The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases
title_fullStr The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases
title_full_unstemmed The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases
title_short The KCNQ1OT1 imprinting control region and non-coding RNA: new properties derived from the study of Beckwith–Wiedemann syndrome and Silver–Russell syndrome cases
title_sort kcnq1ot1 imprinting control region and non-coding rna: new properties derived from the study of beckwith–wiedemann syndrome and silver–russell syndrome cases
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3235007/
https://www.ncbi.nlm.nih.gov/pubmed/21920939
http://dx.doi.org/10.1093/hmg/ddr419
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