Recurrent germline variant in ATM associated with familial myeloproliferative neoplasms

被引:0
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作者
Evan M. Braunstein
Eddie Imada
Sergiu Pasca
Shiyu Wang
Hang Chen
Camille Alba
Dan N. Hupalo
Matthew Wilkerson
Clifton L. Dalgard
Jack Ghannam
Yujia Liu
Luigi Marchionni
Alison Moliterno
Christopher S. Hourigan
Lukasz P. Gondek
机构
[1] Johns Hopkins University,Division of Hematological Malignancies, Sidney Kimmel Comprehensive Cancer Center
[2] Johns Hopkins Hospital,Division of Hematology, Department of Medicine
[3] Weill Cornell Medicine,Division of Computational and Systems Pathology, Department of Pathology and Laboratory Medicine
[4] University of Chicago,Committee on Genetics, Genomics and Systems Biology, Biological Sciences Division
[5] Henry Jackson Foundation for the Advancement of Military Medicine,The American Genome Center
[6] Uniformed Services University of the Health Sciences,Department of Anatomy Physiology & Genetics
[7] Uniformed Services University of the Health Sciences,Laboratory of Myeloid Malignancies, National Heart, Lung and Blood Institute
[8] National Institutes of Health,Department of Biochemistry and Molecular Biology, Biological Sciences Division
[9] University of Chicago,undefined
来源
Leukemia | 2023年 / 37卷
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摘要
Genetic predisposition (familial risk) in the myeloproliferative neoplasms (MPNs) is more common than the risk observed in most other cancers, including breast, prostate, and colon. Up to 10% of MPNs are considered to be familial. Recent genome-wide association studies have identified genomic loci associated with an MPN diagnosis. However, the identification of variants with functional contributions to the development of MPN remains limited. In this study, we have included 630 MPN patients and whole genome sequencing was performed in 64 individuals with familial MPN to uncover recurrent germline predisposition variants. Both targeted and unbiased filtering of single nucleotide variants (SNVs) was performed, with a comparison to 218 individuals with MPN unselected for familial status. This approach identified an ATM L2307F SNV occurring in nearly 8% of individuals with familial MPN. Structural protein modeling of this variant suggested stabilization of inactive ATM dimer, and alteration of the endogenous ATM locus in a human myeloid cell line resulted in decreased phosphorylation of the downstream tumor suppressor CHEK2. These results implicate ATM, and the DNA-damage response pathway, in predisposition to MPN.
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页码:627 / 635
页数:8
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