Microdeletion of target sites for insulator protein CTCF in a chromosome 11p15 imprinting center in Beckwith-Wiedemann syndrome and Wilms' tumor.

نویسندگان

  • Dirk Prawitt
  • Thorsten Enklaar
  • Barbara Gärtner-Rupprecht
  • Christian Spangenberg
  • Monika Oswald
  • Ekkehart Lausch
  • Peter Schmidtke
  • Dirk Reutzel
  • Stephan Fees
  • Rob Lucito
  • Maria Korzon
  • Izabela Brozek
  • Janusz Limon
  • David E Housman
  • Jerry Pelletier
  • Bernhard Zabel
چکیده

We have analyzed several cases of Beckwith-Wiedemann syndrome (BWS) with Wilms' tumor in a familial setting, which give insight into the complex controls of imprinting and gene expression in the chromosome 11p15 region. We describe a 2.2-kbp microdeletion in the H19/insulin-like growth factor 2 (IGF2)-imprinting center eliminating three target sites of the chromatin insulator protein CTCF that we believe here is necessary, but not sufficient, to cause BWS and Wilms' tumor. Maternal inheritance of the deletion is associated with IGF2 loss of imprinting and up-regulation of IGF2 mRNA. However, in at least one affected family member a second genetic lesion (a duplication of maternal 11p15) was identified and accompanied by a further increase in IGF2 mRNA levels 35-fold higher than control values. Our results suggest that the combined effects of the H19/IGF2-imprinting center microdeletion and 11p15 chromosome duplication were necessary for manifestation of BWS.

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منابع مشابه

Beckwith–Wiedemann syndrome and Wilms’ tumour

Patients with rare overgrowth disorders, such as Beckwith–Wiedemann syndrome and Simpson–Golabi– Behmel syndrome, are predisposed to embryonal tumours, including Wilms’ tumour of the kidney. Therefore, these disorders offer a link between hyperplastic growth and cancer. Genetic lesions at chromosome 11p15 have been associated with Beckwith–Wiedemann syndrome and Wilms’ tumour for several years ...

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Tumor development in the Beckwith-Wiedemann syndrome is associated with a variety of constitutional molecular 11p15 alterations including imprinting defects of KCNQ1OT1.

Dysregulation of imprinted genes on human chromosome 11p15 has been implicated in Beckwith-Wiedemann syndrome (BWS), an overgrowth syndrome associated with congenital malformations and tumor predisposition. The molecular basis of BWS is complex and heterogeneous. The syndrome is associated with alterations in two distinct imprinting domains on 11p15: a telomeric domain containing the H19 and IG...

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Genomic imprinting of a human apoptosis gene homologue, TSSC3.

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Mechanisms causing imprinting defects in familial Beckwith-Wiedemann syndrome with Wilms' tumour.

The imprinted expression of the IGF2 and H19 genes is controlled by the Imprinting Centre 1 (IC1) at chromosome 11p15.5. This is a methylation-sensitive chromatin insulator that works by binding the zinc-finger protein CTCF in a parent-specific manner. Microdeletions abolishing some of the CTCF target sites (CTSs) of IC1 have been associated with the Beckwith-Wiedemann syndrome (BWS). However, ...

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عنوان ژورنال:
  • Proceedings of the National Academy of Sciences of the United States of America

دوره 102 11  شماره 

صفحات  -

تاریخ انتشار 2005