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Down's syndrome suppression of tumour growth and the role of the calcineurin inhibitor DSCR1

  • Kwan Hyuck Baek
  • , Alexander Zaslavsky
  • , Ryan C. Lynch
  • , Carmella Britt
  • , Yoshiaki Okada
  • , Richard J. Siarey
  • , M. William Lensch
  • , In Hyun Park
  • , Sam S. Yoon
  • , Takashi Minami
  • , Julie R. Korenberg
  • , Judah Folkman
  • , George Q. Daley
  • , William C. Aird
  • , Zygmunt Galdzicki
  • , Sandra Ryeom*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

325 Scopus citations

Abstract

The incidence of many cancer types is significantly reduced in individuals with Down's syndrome1-4, and it is thought that this broad cancer protection is conferred by the increased expression of one or more of the 231 supernumerary genes on the extra copy of chromosome 21. One such gene is Down's syndrome candidate region-1 (DSCR1, also known as RCAN1), which encodes a protein that suppresses vascular endothelial growth factor (VEGF)mediated angiogenic signalling by the calcineurin pathway5-10. Here we show that DSCR1 is increased in Down's syndrome tissues and in a mouse model of Down's syndrome. Furthermore, we show that the modest increase in expression afforded by a single extra transgenic copy of Dscr1 is sufficient to confer significant suppres-sion of tumour growth in mice, and that such resistance is a con-sequence of a deficit in tumour angiogenesis arising from suppression of the calcineurin pathway. We also provide evidence that attenuation of calcineurin activity by DSCR1, together with another chromosome 21 gene Dyrk1a, may be sufficient to markedly diminish angiogenesis. These data provide a mechanism for the reduced cancer incidence in Down's syndrome and identify the calcineurin signalling pathway, and its regulators DSCR1 and DYRK1A, as potential therapeutic targets in cancers arising in all individuals.

Original languageEnglish
Pages (from-to)1126-1130
Number of pages5
JournalNature
Volume459
Issue number7250
DOIs
StatePublished - 25 Jun 2009

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