The Spectrum and Clinical Impact of Epigenetic Modifier Mutations in Myeloma.

David A Cairns, Gareth J Morgan, Brian A Walker, Faith E Davies, Bart Barlogie, Graham H Jackson, Walter M Gregory, Roger G Owen, Mark T Drayson, Gordon Cook, John R Jones, Eileen M Boyle, Charlotte Pawlyn, Paula Z Proszek, Nasrin M Dahir, Dil B Begum, David C Johnson, Shweta S Chavan, Alex Murison, Christopher P Wardell, Lorenzo Melchor, Christoph Heuck, Martin F Kaiser

Journal: Clinical cancer research : an official journal of the American Association for Cancer Research 2018;22(23):5783-5794

PMID: 27235425

Abstract

PURPOSE

Epigenetic dysregulation is known to be an important contributor to myeloma pathogenesis but, unlike other B-cell malignancies, the full spectrum of somatic mutations in epigenetic modifiers has not been reported previously. We sought to address this using the results from whole-exome sequencing in the context of a large prospective clinical trial of newly diagnosed patients and targeted sequencing in a cohort of previously treated patients for comparison.

EXPERIMENTAL DESIGN

Whole-exome sequencing analysis of 463 presenting myeloma cases entered in the UK NCRI Myeloma XI study and targeted sequencing analysis of 156 previously treated cases from the University of Arkansas for Medical Sciences (Little Rock, AR). We correlated the presence of mutations with clinical outcome from diagnosis and compared the mutations found at diagnosis with later stages of disease.

RESULTS

In diagnostic myeloma patient samples, we identify significant mutations in genes encoding the histone 1 linker protein, previously identified in other B-cell malignancies. Our data suggest an adverse prognostic impact from the presence of lesions in genes encoding DNA methylation modifiers and the histone demethylase KDM6A/UTX The frequency of mutations in epigenetic modifiers appears to increase following treatment most notably in genes encoding histone methyltransferases and DNA methylation modifiers.

CONCLUSIONS

Numerous mutations identified raise the possibility of targeted treatment strategies for patients either at diagnosis or relapse supporting the use of sequencing-based diagnostics in myeloma to help guide therapy as more epigenetic targeted agents become available. Clin Cancer Res; 22(23); 5783-94. ©2016 AACR.

©2016 American Association for Cancer Research.

Address: The Institute of Cancer Research, London, United Kingdom.; Myeloma Institute, University of Arkansas for Medical Sciences, Little Rock, Arkansas.; Clinical Trials Research Unit, Leeds Institute of Clinical Trials Research, University of Leeds, Leeds, United Kingdom.; University of Leeds, Leeds, United Kingdom.; Clinical Immunology, School of Immunity and Infection, University of Birmingham, Birmingham, United Kingdom.; St James's University Hospital, Leeds, United Kingdom.; Department of Haematology, Newcastle University, Newcastle, United Kingdom.; The Institute of Cancer Research, London, United Kingdom. [email protected].
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