Deletions of chromosomal regulatory boundaries are associated with congenital disease

被引:212
作者
Ibn-Salem, Jonas [1 ,2 ,3 ]
Koehler, Sebastian [3 ]
Love, Michael I. [2 ,4 ]
Chung, Ho-Ryun [2 ]
Huang, Ni [5 ]
Hurles, Matthew E. [5 ]
Haendel, Melissa [6 ]
Washington, Nicole L. [7 ]
Smedley, Damian [5 ]
Mungall, Christopher J. [7 ]
Lewis, Suzanna E. [7 ]
Ott, Claus-Eric [2 ]
Bauer, Sebastian [3 ]
Schofield, Paul N. [8 ,9 ]
Mundlos, Stefan [2 ,3 ,10 ]
Spielmann, Malte [2 ,3 ]
Robinson, Peter N. [1 ,2 ,3 ,4 ,10 ]
机构
[1] Free Univ Berlin, Dept Math & Comp Sci, D-14195 Berlin, Germany
[2] Max Planck Inst Mol Genet, D-14195 Berlin, Germany
[3] Charite, Inst Med & Human Genet, D-13353 Berlin, Germany
[4] Int Max Planck Res Sch Computat Biol & Sci Comp, D-14195 Berlin, Germany
[5] Wellcome Trust Sanger Inst, Hinxton CB10 1SA, England
[6] Oregon Hlth & Sci Univ, Dept Med Informat & Clin Epidemiol, Portland, OR 97239 USA
[7] Univ Calif Berkeley, Lawrence Berkeley Natl Lab, Genom Div, Berkeley, CA 94720 USA
[8] Jackson Lab, Bar Harbor, ME 04609 USA
[9] Univ Cambridge, Dept Physiol Dev & Neurosci, Cambridge CB2 3EG, England
[10] Berlin Brandenburg Ctr Regenerat Therapies BCRT, D-13353 Berlin, Germany
来源
GENOME BIOLOGY | 2014年 / 15卷 / 09期
基金
美国国家卫生研究院;
关键词
GENOME BROWSER DATABASE; MENTAL-RETARDATION; OPEN CHROMATIN; GENE; PHENOTYPE; ORGANIZATION; INSULATORS; EXPRESSION; HUMANS; FOXG1;
D O I
10.1186/s13059-014-0423-1
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Background: Recent data from genome-wide chromosome conformation capture analysis indicate that the human genome is divided into conserved megabase-sized self-interacting regions called topological domains. These topological domains form the regulatory backbone of the genome and are separated by regulatory boundary elements or barriers. Copy-number variations can potentially alter the topological domain architecture by deleting or duplicating the barriers and thereby allowing enhancers from neighboring domains to ectopically activate genes causing misexpression and disease, a mutational mechanism that has recently been termed enhancer adoption. Results: We use the Human Phenotype Ontology database to relate the phenotypes of 922 deletion cases recorded in the DECIPHER database to monogenic diseases associated with genes in or adjacent to the deletions. We identify combinations of tissue-specific enhancers and genes adjacent to the deletion and associated with phenotypes in the corresponding tissue, whereby the phenotype matched that observed in the deletion. We compare this computationally with a gene-dosage pathomechanism that attempts to explain the deletion phenotype based on haploinsufficiency of genes located within the deletions. Up to 11.8% of the deletions could be best explained by enhancer adoption or a combination of enhancer adoption and gene-dosage effects. Conclusions: Our results suggest that enhancer adoption caused by deletions of regulatory boundaries may contribute to a substantial minority of copy-number variation phenotypes and should thus be taken into account in their medical interpretation.
引用
收藏
页数:16
相关论文
共 65 条
[1]   14q12 and severe Rett-like phenotypes: new clinical insights and physical mapping of FOXG1-regulatory elements [J].
Allou, Lila ;
Lambert, Laetitia ;
Amsallem, Daniel ;
Bieth, Eric ;
Edery, Patrick ;
Destree, Anne ;
Rivier, Francois ;
Amor, David ;
Thompson, Elizabeth ;
Nicholl, Julian ;
Harbord, Michael ;
Nemos, Christophe ;
Saunier, Aline ;
Moustaine, Aissa ;
Vigouroux, Adeline ;
Jonveaux, Philippe ;
Philippe, Christophe .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2012, 20 (12) :1216-1223
[2]   Pitx1 haploinsufficiency causes clubfoot in humans and a clubfoot-like phenotype in mice [J].
Alvarado, David M. ;
McCall, Kevin ;
Aferol, Hyuliya ;
Silva, Matthew J. ;
Garbow, Joel R. ;
Spees, William M. ;
Patel, Tarpit ;
Siegel, Marilyn ;
Dobbs, Matthew B. ;
Gurnett, Christina A. .
HUMAN MOLECULAR GENETICS, 2011, 20 (20) :3943-3952
[3]  
[Anonymous], CURR PROTOC HUM GENE
[4]  
[Anonymous], 2011, INTRO BIOONTOLOGIES
[5]   FOXG1 is responsible for the congenital variant of Rett syndrome [J].
Ariani, Francesca ;
Hayek, Giuseppe ;
Rondinella, Dalila ;
Artuso, Rosangela ;
Mencarelli, Maria Antonietta ;
Spanhol-Rosseto, Ariele ;
Pollazzon, Marzia ;
Buoni, Sabrina ;
Spiga, Ottavia ;
Ricciardi, Sara ;
Meloni, Ilaria ;
Longo, Ilaria ;
Mari, Francesca ;
Broccoli, Vania ;
Zappella, Michele ;
Renieri, Alessandra .
AMERICAN JOURNAL OF HUMAN GENETICS, 2008, 83 (01) :89-93
[6]   Role of fibroblast growth factor receptor signaling in kidney development [J].
Bates, Carlton M. .
PEDIATRIC NEPHROLOGY, 2011, 26 (09) :1373-1379
[7]   The NIH Roadmap Epigenomics Mapping Consortium [J].
Bernstein, Bradley E. ;
Stamatoyannopoulos, John A. ;
Costello, Joseph F. ;
Ren, Bing ;
Milosavljevic, Aleksandar ;
Meissner, Alexander ;
Kellis, Manolis ;
Marra, Marco A. ;
Beaudet, Arthur L. ;
Ecker, Joseph R. ;
Farnham, Peggy J. ;
Hirst, Martin ;
Lander, Eric S. ;
Mikkelsen, Tarjei S. ;
Thomson, James A. .
NATURE BIOTECHNOLOGY, 2010, 28 (10) :1045-1048
[8]   Wnt/β-catenin signaling suppresses DUX4 expression and prevents apoptosis of FSHD muscle cells [J].
Block, Gregory J. ;
Narayanan, Divya ;
Amell, Amanda M. ;
Petek, Lisa M. ;
Davidson, Kathryn C. ;
Bird, Thomas D. ;
Tawil, Rabi ;
Moon, Randall T. ;
Miller, Daniel G. .
HUMAN MOLECULAR GENETICS, 2013, 22 (23) :4661-4672
[9]   Large-Scale Objective Association of Mouse Phenotypes with Human Symptoms Through Structural Variation Identified in Patients with Developmental Disorders [J].
Boulding, Hannah ;
Webber, Caleb .
HUMAN MUTATION, 2012, 33 (05) :874-883
[10]   High-resolution mapping and characterization of open chromatin across the genome [J].
Boyle, Alan P. ;
Davis, Sean ;
Shulha, Hennady P. ;
Meltzer, Paul ;
Margulies, Elliott H. ;
Weng, Zhiping ;
Furey, Terrence S. ;
Crawford, Gregory E. .
CELL, 2008, 132 (02) :311-322