Imprinting mutation in the Beckwith-Wiedemann syndrome leads to biallelic IGF2 expression through an H19-independent pathway

被引:78
作者
Brown, KW
Villar, AJ
Bickmore, W
ClaytonSmith, J
Catchpoole, D
Maher, ER
Reik, W
机构
[1] BABRAHAM INST,LAB DEV GENET & IMPRINTING,CAMBRIDGE CB2 4AT,ENGLAND
[2] SCH MED SCI BRISTOL,DEPT PATHOL & MICROBIOL,BRISTOL BS8 1TD,AVON,ENGLAND
[3] MRC,HUMAN GENET UNIT,CELL GENET SECT,EDINBURGH,MIDLOTHIAN,SCOTLAND
[4] ST MARYS HOSP,REG GENET SERV,MANCHESTER M13 0JH,LANCS,ENGLAND
[5] ADDENBROOKES NHS TRUST,DEPT CLIN GENET,CAMBRIDGE,ENGLAND
[6] UNIV CAMBRIDGE,DEPT PATHOL,CAMBRIDGE CB2 1TN,ENGLAND
基金
英国惠康基金;
关键词
D O I
10.1093/hmg/5.12.2027
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
The Beckwith-Wiedemann syndrome (BWS) is genetically linked to chromosome 11p15.5, and a variety of observations suggest that deregulation of imprinted genes in this region is causally involved in the pathogenesis of the disease, It has been shown that in some patients without cytogenetic abnormalities the otherwise repressed maternal copy of the insulin-like growth factor 2 (IGF2) gene is expressed, leading to biallelic expression of IGF2. In some of these cases, this is accompanied by repression and DNA methylation of the maternal (otherwise active) copy of the neighbouring H19 gene, Hence, it is attractive to think that mutations may interfere with some aspect of H19 imprinting, thus leading to an inactive maternal allele, and indirectly to activation of the maternal IGF2 allele as reported in mice with an H19 gene deletion, However, no mutations have been identified so far in these patients, The only known mutations associated with BWS are maternally transmitted translocations, which are clustered in two locations centromeric to IGF2, The first cluster is 200-400 kb from IGF2 and the second is several megabases away, Hence, genes located far from the translocation breakpoints are potentially deregulated by them, Here we provide the first evidence of alteration of imprinting in a translocation family, with biallelic expression of IGF2 and altered DNA replication patterns in the IGF2 region, Interestingly, H19 imprinting was normal, suggesting an H19-independent pathway to biallelic IGF2 transcription, DNA methylation in IGF2 remained monoallelic, suggesting that the mutation in this family had uncoupled allele-specific methylation from expression.
引用
收藏
页码:2027 / 2032
页数:6
相关论文
共 43 条
[1]
EPIGENETIC MECHANISMS UNDERLYING THE IMPRINTING OF THE MOUSE H19-GENE [J].
BARTOLOMEI, MS ;
WEBBER, AL ;
BRUNKOW, ME ;
TILGHMAN, SM .
GENES & DEVELOPMENT, 1993, 7 (09) :1663-1673
[2]
BICKMORE WA, 1995, J CELL SCI, V108, P2801
[3]
INHERITED MICRODELETIONS IN THE ANGELMAN AND PRADER-WILLI SYNDROMES DEFINE AN IMPRINTING CENTER ON HUMAN-CHROMOSOME-15 [J].
BUITING, K ;
SAITOH, S ;
GROSS, S ;
DITTRICH, B ;
SCHWARTZ, S ;
NICHOLLS, RD ;
HORSTHEMKE, B .
NATURE GENETICS, 1995, 9 (04) :395-400
[4]
MODELS OF DNA-REPLICATION TIMING IN INTERPHASE NUCLEI - AN EXERCISE IN INFERRING PROCESS FROM STATE [J].
CAROTHERS, AD ;
BICKMORE, WA .
BIOMETRICS, 1995, 51 (02) :750-755
[5]
CATCHPOOLE D, 1996, UNPUB
[6]
DoucRasy S, 1996, ONCOGENE, V12, P423
[7]
BECKWITH-WIEDEMANN SYNDROME [J].
ELLIOTT, M ;
MAHER, ER .
JOURNAL OF MEDICAL GENETICS, 1994, 31 (07) :560-564
[8]
CHROMATIN STRUCTURE AND IMPRINTING - DEVELOPMENTAL CONTROL OF DNASE-I SENSITIVITY IN THE MOUSE INSULIN-LIKE-GROWTH-FACTOR-2 GENE [J].
FEIL, R ;
HANDEL, MA ;
ALLEN, ND ;
REIK, W .
DEVELOPMENTAL GENETICS, 1995, 17 (03) :240-252
[9]
FEIL R, 1994, DEVELOPMENT, V120, P2933
[10]
TISSUE-SPECIFIC AND ALLELE-SPECIFIC REPLICATION TIMING CONTROL IN THE IMPRINTED HUMAN PRADER-WILLI-SYNDROME REGION [J].
GUNARATNE, PH ;
NAKAO, M ;
LEDBETTER, DH ;
SUTCLIFFE, JS ;
CHINAULT, AC .
GENES & DEVELOPMENT, 1995, 9 (07) :808-820