Epigenetic Silencing in Friedreich Ataxia Is Associated with Depletion of CTCF (CCCTC-Binding Factor) and Antisense Transcription

被引:89
作者
De Biase, Irene
Chutake, Yogesh K.
Rindler, Paul M.
Bidichandani, Sanjay I.
机构
[1] Department of Biochemistry and Molecular Biology, University of Oklahoma Health Sciences Center, Oklahoma City, OK
[2] Department of Pediatrics, University of Oklahoma Health Sciences Center, Oklahoma City, OK
来源
PLOS ONE | 2009年 / 4卷 / 11期
关键词
TRIPLET-REPEAT EXPANSION; DOT-TTC REPEATS; HUMAN PROMOTERS; HUMAN-CELLS; GENE; RNA; CHROMATIN; HETEROCHROMATIN; COHESIN; DNA;
D O I
10.1371/journal.pone.0007914
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Over 15 inherited diseases are caused by expansion of triplet-repeats. Friedreich ataxia (FRDA) patients are homozygous for an expanded GAA triplet-repeat sequence in intron 1 of the FXN gene. The expanded GAA triplet-repeat results in deficiency of FXN gene transcription, which is reversed via administration of histone deacetylase inhibitors indicating that transcriptional silencing is at least partially due to an epigenetic abnormality. Methodology/Principal Findings: We found a severe depletion of the chromatin insulator protein CTCF (CCCTC-binding factor) in the 5'UTR of the FXN gene in FRDA, and coincident heterochromatin formation involving the +1 nucleosome via enrichment of H3K9me3 and recruitment of heterochromatin protein 1. We identified FAST-1 (FXN Antisense Transcript - 1), a novel antisense transcript that overlaps the CTCF binding site in the 5'UTR, which was expressed at higher levels in FRDA. The reciprocal relationship of deficient FXN transcript and higher levels of FAST-1 seen in FRDA was reproduced in normal cells via knockdown of CTCF. Conclusions/Significance: CTCF depletion constitutes an epigenetic switch that results in increased antisense transcription, heterochromatin formation and transcriptional deficiency in FRDA. These findings provide a mechanistic basis for the transcriptional silencing of the FXN gene in FRDA, and broaden our understanding of disease pathogenesis in triplet-repeat diseases.
引用
收藏
页数:8
相关论文
共 41 条
[1]   The Friedreich ataxia GAA repeat expansion mutation induces comparable epigenetic changes in human and transgenic mouse brain and heart tissues [J].
Al-Mahdawi, Sahar ;
Pinto, Ricardo Mouro ;
Ismail, Ozama ;
Varshney, Dhaval ;
Lymperi, Stefania ;
Sandi, Chiranjeevi ;
Trabzuni, Daniah ;
Pook, Mark .
HUMAN MOLECULAR GENETICS, 2008, 17 (05) :735-746
[2]   High-resolution profiling of histone methylations in the human genome [J].
Barski, Artern ;
Cuddapah, Suresh ;
Cui, Kairong ;
Roh, Tae-Young ;
Schones, Dustin E. ;
Wang, Zhibin ;
Wei, Gang ;
Chepelev, Iouri ;
Zhao, Keji .
CELL, 2007, 129 (04) :823-837
[3]   The GAA triplet-repeat expansion in Friedreich ataxia interferes with transcription and may be associated with an unusual DNA structure [J].
Bidichandani, SI ;
Ashizawa, T ;
Patel, PI .
AMERICAN JOURNAL OF HUMAN GENETICS, 1998, 62 (01) :111-121
[4]   DNA sequence-specific polyamides alleviate transcription inhibition associated with long GAA•TTC repeats in Friedreich's ataxia [J].
Burnett, Ryan ;
Melander, Christian ;
Puckett, James W. ;
Son, Leslie S. ;
Wells, Robert D. ;
Dervan, Peter B. ;
Gottesfeld, Joel M. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (31) :11497-11502
[5]   Chromatin Insulators: Regulatory Mechanisms and Epigenetic Inheritance [J].
Bushey, Ashley M. ;
Dorman, Elizabeth R. ;
Corces, Victor G. .
MOLECULAR CELL, 2008, 32 (01) :1-9
[6]   Friedreich's ataxia: Autosomal recessive disease caused by an intronic GAA triplet repeat expansion [J].
Campuzano, V ;
Montermini, L ;
Molto, MD ;
Pianese, L ;
Cossee, M ;
Cavalcanti, F ;
Monros, E ;
Rodius, F ;
Duclos, F ;
Monticelli, A ;
Zara, F ;
Canizares, J ;
Koutnikova, H ;
Bidichandani, SI ;
Gellera, C ;
Brice, A ;
Trouillas, P ;
DeMichele, G ;
Filla, A ;
DeFrutos, R ;
Palau, F ;
Patel, PI ;
DiDonato, S ;
Mandel, JL ;
Cocozza, S ;
Koenig, M ;
Pandolfo, M .
SCIENCE, 1996, 271 (5254) :1423-1427
[7]   Antisense transcription and heterochromatin at the DM1 CTG repeats are constrained by CTCF [J].
Cho, DH ;
Thienes, CP ;
Mahoney, SE ;
Analau, E ;
Filippova, GN ;
Tapscott, SJ .
MOLECULAR CELL, 2005, 20 (03) :483-489
[8]   Nascent RNA Sequencing Reveals Widespread Pausing and Divergent Initiation at Human Promoters [J].
Core, Leighton J. ;
Waterfall, Joshua J. ;
Lis, John T. .
SCIENCE, 2008, 322 (5909) :1845-1848
[9]   A rapid micro chromatin immunoprecipitation assay (μChIP) [J].
Dahl, John Arne ;
Collas, Philippe .
NATURE PROTOCOLS, 2008, 3 (06) :1032-1045
[10]   Independent and complementary methods for large-scale structural analysis of mammalian chromatin [J].
Dennis, Jonathan H. ;
Fan, Hua-Ying ;
Reynolds, Sheila M. ;
Yuan, Guocheng ;
Meldrim, James C. ;
Richter, Daniel J. ;
Peterson, Daniel G. ;
Rando, Oliver J. ;
Noble, William S. ;
Kingston, Robert E. .
GENOME RESEARCH, 2007, 17 (06) :928-939