Distinct Methylation Changes at the IGF2-H19 Locus in Congenital Growth Disorders and Cancer

被引:82
作者
Murrell, Adele [1 ]
Ito, Yoko [1 ]
Verde, Gaetano [2 ]
Huddleston, Joanna [1 ]
Woodfine, Kathryn [1 ]
Silengo, Margherita Cirillo [4 ]
Spreafico, Filippo [5 ]
Perotti, Daniela [6 ]
De Crescenzo, Agostina [2 ,3 ]
Sparago, Angela [2 ,3 ]
Cerrato, Flavia [2 ,3 ]
Riccio, Andrea [2 ,3 ]
机构
[1] Univ Cambridge, CRUK Cambridge Res Inst, Dept Oncol, Cambridge, England
[2] Seconda Univ Napoli, Dipartimento Sci Ambientali, Caserta, Italy
[3] CNR, Inst Genet & Biophys, Naples, Italy
[4] Univ Turin, Dipartimento Sci Pediatriche Adolescenza, Turin, Italy
[5] Fdn IRCCS Ist Nazionale Tumori, Dept Med Oncol, Pediat Oncol Unit, Milan, Italy
[6] Fdn IRCCS Ist Nazionale Tumori, Dept Expt Oncol & Lab, Milan, Italy
来源
PLOS ONE | 2008年 / 3卷 / 03期
关键词
D O I
10.1371/journal.pone.0001849
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: Differentially methylated regions (DMRs) are associated with many imprinted genes. In mice methylation at a DMR upstream of the H19 gene known as the Imprint Control region (IC1) is acquired in the male germline and influences the methylation status of DMRs 100 kb away in the adjacent Insulin-like growth factor 2 (Igf2) gene through long-range interactions. In humans, germline-derived or post-zygotically acquired imprinting defects at IC1 are associated with aberrant activation or repression of IGF2, resulting in the congenital growth disorders Beckwith-Wiedemann (BWS) and Silver-Russell (SRS) syndromes, respectively. In Wilms tumour and colorectal cancer, biallelic expression of IGF2 has been observed in association with loss of methylation at a DMR in IGF2. This DMR, known as DMR0, has been shown to be methylated on the silent maternal IGF2 allele presumably with a role in repression. The effect of IGF2 DMR0 methylation changes in the aetiology of BWS or SRS is unknown. Methodology/Principal Findings: We analysed the methylation status of the DMR0 in BWS, SRS and Wilms tumour patients by conventional bisulphite sequencing and pyrosequencing. We show here that, contrary to previous reports, the IGF2 DMR0 is actually methylated on the active paternal allele in peripheral blood and kidney. This is similar to the IC1 methylation status and is inconsistent with the proposed silencing function of the maternal IGF2 allele. Beckwith-Wiedemann and Silver-Russell patients with IC1 methylation defects have similar methylation defects at the IGF2 DMR0, consistent with IC1 regulating methylation at IGF2 in cis. In Wilms tumour, however, methylation profiles of IC1 and IGF2 DMR0 are indicative of methylation changes occurring on both parental alleles rather than in cis. Conclusions/Significance: These results support a model in which DMR0 and IC1 have opposite susceptibilities to global hyper and hypomethylation during tumorigenesis independent of the parent of origin imprint. In contrast, during embryogenesis DMR0 is methylated or demethylated according to the germline methylation imprint at the IC1, indicating different mechanisms of imprinting loss in neoplastic and non-neoplastic cells.
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页数:7
相关论文
共 32 条
[1]   Methylation of a CTCF-dependent boundary controls imprinted expression of the Igf2 gene [J].
Bell, AC ;
Felsenfeld, G .
NATURE, 2000, 405 (6785) :482-485
[2]   Hypomethylation of the h19 gene causes not only Silver-Russell syndrome (SRS) but also isolated asymmetry or an SRS-like phenotype [J].
Bliek, J ;
Terhal, P ;
van den Bogaard, MJ ;
Maas, S ;
Hamel, B ;
Salieb-Beugelaar, G ;
Simon, M ;
Letteboer, T ;
van der Smagt, J ;
Kroes, H ;
Mannens, M .
AMERICAN JOURNAL OF HUMAN GENETICS, 2006, 78 (04) :604-614
[3]   Examination of IGF2 and H19 loss of imprinting in bladder cancer [J].
Byun, Hyang-Min ;
Wong, Hui-Lee ;
Birnstein, Elliott Aaron ;
Wolff, Erika M. ;
Liang, Gangning ;
Yang, Allen S. .
CANCER RESEARCH, 2007, 67 (22) :10753-10758
[4]   Deletion of a silencer element in lgf2 results in loss of imprinting independent of H19 [J].
Constância, M ;
Dean, W ;
Lopes, S ;
Moore, T ;
Kelsey, G ;
Reik, W .
NATURE GENETICS, 2000, 26 (02) :203-206
[5]   Developmentally imprinted genes as markers for bladder tumor progression [J].
Cooper, MJ ;
Fischer, M ;
Komitowski, D ;
Shevelev, A ;
Schulze, E ;
Ariel, I ;
Tykocinski, ML ;
Miron, S ;
Ilan, J ;
DeGroot, N ;
Hochberg, A .
JOURNAL OF UROLOGY, 1996, 155 (06) :2120-2127
[6]   Molecular subtypes and phenotypic expression of Beckwith-Wiedemann syndrome [J].
Cooper, WN ;
Luharia, A ;
Evans, GA ;
Raza, H ;
Haire, AC ;
Grundy, R ;
Bowdin, SC ;
Riccio, A ;
Sebastio, G ;
Bliek, J ;
Schofield, PN ;
Reik, W ;
Macdonald, F ;
Maher, ER .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2005, 13 (09) :1025-1032
[7]  
Cui HM, 2002, CANCER RES, V62, P6442
[8]   Epigenetic deregulation of imprinting in congenital diseases of aberrant growth [J].
Delaval, K ;
Wagschal, A ;
Feil, R .
BIOESSAYS, 2006, 28 (05) :453-459
[9]   Cancer as an epigenetic disease: DNA methylation and chromatin alterations in human tumours [J].
Esteller, M ;
Herman, JG .
JOURNAL OF PATHOLOGY, 2002, 196 (01) :1-7
[10]  
FEIL R, 1994, DEVELOPMENT, V120, P2933