Expression and parental imprinting of the H19 gene in human rhabdomyosarcoma

Stefano Casola, Paolo V. Pedone, Andrea O. Cavazzana, Giuseppe Basso, Roberto Luksch, Emanuele S G D'Amore, Modesto Carli, Carmelo B. Bruni, Andrea Riccio

Research output: Contribution to journalArticlepeer-review


The expression of Insulin-like Growth Factor 2 (IGF-2) and H19, two genes located on human chromosome 11p15 and provided with cell growth modulating activity, is regulated by parental imprinting, in that the activity of their alleles is dependent on the parental origin. Parental bias in the genetic alterations of chromosome 11p15 observed in several pediatric cancers suggests the involvement of imprinted genes in tumor development. We have previously reported that the number of functional IGF-2 alleles is frequently increased in rhabdomyosarcoma (RMS), as a consequence of either relaxation of imprinting (LOI) or gene duplication. Here we show that the expression of the H19 gene is significantly suppressed with respect to normal muscle tissue in 13 out of 15 rhabdomyosarcomas with embryonal histology (ERMS) and in three out of 11 rhabdomyosarcomas classified as alveolar subtype (ARMS). Since a growth-inhibitory activity has been found associated with the H19 gene, the extinction of its expression can contribute to RMS development. Parental imprinting of the H19 gene was found conserved in all informative RMSs, including those whose IGF-2 imprinting was relaxed, indicating that LOI is a gene-specific event. Seven ERMSs and one ARMS displaying low H19 RNA levels showed an underrepresentation of the expressed allele in their genotype. This result is consistent with the paternal imprinting of the H19 gene and with the preferential loss of the maternal 11p15 alleles in these neoplasms. Low H19 expression was also found in four out of eight RMSs retaining the heterozygosity at 11p15, but showing IGF-2 LOI. These findings suggest that the genetic and epigenetic alterations affecting chromosome 11p15 in a high number of RMSs cause deregulation of more than one imprinted gene, possibly affecting tumor growth, including extinction of H19 expression and number of active IGF-2 alleles.

Original languageEnglish
Pages (from-to)1503-1510
Number of pages8
Issue number12
Publication statusPublished - 1997


  • 11p15 LOH
  • Genomic imprinting
  • Pediatric cancer

ASJC Scopus subject areas

  • Molecular Biology
  • Cancer Research
  • Genetics


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