Somatic mutations and germline sequence variants in the expressed tyrosine kinase genes of patients with de novo acute myeloid leukemia

Author:

Tomasson Michael H.1,Xiang Zhifu1,Walgren Richard1,Zhao Yu1,Kasai Yumi2,Miner Tracie2,Ries Rhonda E.1,Lubman Olga3,Fremont Daved H.3,McLellan Michael D.2,Payton Jacqueline E.1,Westervelt Peter1,DiPersio John F.1,Link Daniel C.1,Walter Matthew J.1,Graubert Timothy A.1,Watson Mark3,Baty Jack4,Heath Sharon1,Shannon William D.14,Nagarajan Rakesh3,Bloomfield Clara D.5,Mardis Elaine R.2,Wilson Richard K.2,Ley Timothy J.1

Affiliation:

1. Department of Medicine, Division of Oncology;

2. Genome Sequencing Center;

3. Department of Pathology and Immunology; and

4. Division of Biostatistics, Siteman Cancer Center, all at Washington University School of Medicine, St Louis, MO; and

5. Cancer and Leukemia Group B, Ohio State University Comprehensive Cancer Center, Columbus

Abstract

AbstractActivating mutations in tyrosine kinase (TK) genes (eg, FLT3 and KIT) are found in more than 30% of patients with de novo acute myeloid leukemia (AML); many groups have speculated that mutations in other TK genes may be present in the remaining 70%. We performed high-throughput resequencing of the kinase domains of 26 TK genes (11 receptor TK; 15 cytoplasmic TK) expressed in most AML patients using genomic DNA from the bone marrow (tumor) and matched skin biopsy samples (“germline”) from 94 patients with de novo AML; sequence variants were validated in an additional 94 AML tumor samples (14.3 million base pairs of sequence were obtained and analyzed). We identified known somatic mutations in FLT3, KIT, and JAK2 TK genes at the expected frequencies and found 4 novel somatic mutations, JAK1V623A, JAK1T478S, DDR1A803V, and NTRK1S677N, once each in 4 respective patients of 188 tested. We also identified novel germline sequence changes encoding amino acid substitutions (ie, nonsynonymous changes) in 14 TK genes, including TYK2, which had the largest number of nonsynonymous sequence variants (11 total detected). Additional studies will be required to define the roles that these somatic and germline TK gene variants play in AML pathogenesis.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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