Pharmacogenomics Research - Pharmacology, Designer Drugs, Customized Medicines

Pharmacogenomics Research Today is a free monthly online journal that collates and summarizes the latest research about Pharmacogenomics, including details on pharmacology, designer drugs, customized medicines.


Pharmacogenomics Research Today

Home

View Latest Issue

Information About Pharmacogenomics

Books on Pharmacogenomics

Advertising in Research Today

View Other Research Today Publications



Rapamycin inhibits growth and survival of D816V-mutated c-kit mast cells.

Gabillot-Carré M, Lepelletier Y, Humbert M, de Sepuvelda P, Hamouda NB, Zappulla JP, Liblau R, Ribadeau-Dumas A, Machavoine F, Letard S, Baude C, Hermant A, Yang Y, Vargaftig J, Bodemer C, Morelon E, Lortholary O, Recher C, Laurent G, Dy M, Arock M, Dubreuil P, Hermine O

CNRS UMR-8147, Université René Descartes Paris V, Hôpital Necker, 161 rue de Sèvres, 75743 Paris cedex 15, France.

Two classes of oncogenic mutations of the c-kit tyrosine kinase have been described: the juxtamembrane domain V560G mutation, which is preferentially found in gastrointestinal stromal tumors (GISTs), and the kinase domain D816V mutation, which is highly representative of systemic mastocytosis (SM). Here we show that both mutations constitutively activate the mammalian target of rapamycin (mTOR) signaling pathway. Surprisingly, the mTOR inhibitor rapamycin induces only apoptosis in HMC-1 cells bearing the D816V but not the V560G mutation. In support of this unexpected selectivity, rapamycin inhibits the phosphorylation of 4E-BP1, a downstream substrate of the mTOR pathway, but only in D816V HMC-1 cells. Importantly, D816V mast cells isolated from SM patients or from transgenic mice are sensitive to rapamycin whereas normal human or mouse mast cells are not. Thus, rapamycin inhibition appears specific to the D816V mutation. At present there is no effective cure for SM patients with the D816V mutation. The data presented here provide a rationale to test whether rapamycin could be a possible treatment for SM and other hematologic malignancies with the D816V mutation.

Published 24 July 2006 in Blood, 108(3): 1065-72.
Full-text of this article is available online (may require subscription).

Place a permanent text-link or advertisement here for just US$15.

© 2005-2008 Pharmacogenomics Research Today. All Rights Reserved.



Pharmacogenomics Research Today Archive:

Volume 1 (2005)
  Issue 1 (October)
  Issue 2 (November)
  Issue 3 (December)

Volume 2 (2006)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)
  Issue 9 (September)
  Issue 10 (October)
  Issue 11 (November)
  Issue 12 (December)

Volume 3 (2007)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)
  Issue 9 (September)
  Issue 10 (October)
  Issue 11 (November)
  Issue 12 (December)

Volume 4 (2008)
  Issue 1 (January)
  Issue 2 (February)
  Issue 3 (March)
  Issue 4 (April)
  Issue 5 (May)
  Issue 6 (June)
  Issue 7 (July)
  Issue 8 (August)



Pharmacogenomics Books

Pharmacogenomics, Second Edition (Drugs and the Pharmaceutical Sciences)

Pharmacogenomics, Second Edition (Drugs and the Pharmaceutical Sciences)