4.7 Article

Tyrosine kinome sequencing of pediatric acute lymphoblastic leukemia: a report from the Children's Oncology Group TARGET Project

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BLOOD
卷 121, 期 3, 页码 485-488

出版社

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2012-04-422691

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资金

  1. National Institutes of Health Strategic Partnerships to Evaluate Cancer Gene Signatures Program (Department of Health and Human Services) [NCI U01 CA114762]
  2. COG
  3. COG Chair's grant [CA98543]
  4. TARGET Project [U10 CA98413, U24 CA114766]
  5. American and Lebanese Syrian Associated Charities of St Jude Children's Research Hospital
  6. Frank A. Campini Foundation
  7. University of New Mexico Cancer Center Shared Facilities
  8. KUGR Genomics, Biostatistics, and Bioinformatics & Computational Biology
  9. NCI [P30 CA118100]
  10. National Cancer Institute, National Institute of Health [NCI-12400]
  11. National Health and Medical Research Council (Australia)
  12. Hematology Society of Australia
  13. New Zealand Novartis New Investigator Scholarship

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One recently identified subtype of pediatric B-precursor acute lymphoblastic leukemia (ALL) has been termed BCR-ABL1-like or Ph-like because of similarity of the gene expression profile to BCR-ABL1 positive ALL suggesting the presence of lesions activating tyrosine kinases, frequent alteration of IKZF1, and poor outcome. Prior studies demonstrated that approximately half of these patients had genomic lesions leading to CRLF2 overexpression, with half of such cases harboring somatic mutations in the Janus kinases JAK1 and JAK2. To determine whether mutations in other tyrosine kinases might also occur in ALL, we sequenced the tyrosine kinome and downstream signaling genes in 45 high-risk pediatric ALL cases with either a Ph-like gene expression profile or other alterations suggestive of activated kinase signaling. Aside from JAK mutations and 1 FLT3 mutation, no somatic mutations were found in any other tyrosine kinases, suggesting that alternative mechanisms are responsible for activated kinase signaling in high-risk ALL. (Blood. 2013;121(3):485-488)

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