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Multiple myeloma risk linked to DNA damage response genes

  • Michael Conry
  • , Irina Ostrovnaya
  • , Yelena Kemel
  • , Saloni Sinha
  • , Linda B. Baughn
  • , Brian Avery
  • , Kylee Maclachlan
  • , Victoria Groner
  • , Lauren Banaszak
  • , Aaron Norman
  • , Nicholas J. Boddicker
  • , Alyssa Clay-Gilmour
  • , Shaji Kumar
  • , Ellen Kim
  • , Sita Dandiker
  • , Mitul Waghmare
  • , Susan Slager
  • , Douglas W. Sborov
  • , Judy Garber
  • , Elizabeth E. Brown
  • Michelle Hildebrandt, Parameshwaran Hari, Nicola Camp, Celine Vachon, Saad Usmani, Kenneth Offit, Vijai Joseph

Research output: Contribution to journalArticlepeer-review

Abstract

Background: DNA damage response genes (DDRG), implicated in several cancers as both predisposing risk factors as well as biomarkers for aggressiveness, have not been fully explored in multiple myeloma (MM). Methods: Herein, we analyzed disease associations of pathogenic variations in nine putative candidate genes using 3 446 MM cases and 323 233 cancer-free controls. Results: Increased MM risk was found to be associated with inherited rare pathogenic mutations in TP53, ATM, CHEK2, KDM1A, and ARID1A, with an enrichment of these variants among individuals with early onset or family history of MM. Individuals with TP53 or ATM germline mutations are also likely to have worse overall survival. Conclusions: Our results suggest expansion of the phenotypic spectrum of some of these DDRG to include MM. The identification of these germline predisposition genes opens the avenue for targeted screening of higher risk individuals especially those with young-onset or a family history of plasma cell gammopathies.

Original languageEnglish (US)
Article number10
JournalJournal of Hematology and Oncology
Volume19
Issue number1
DOIs
StatePublished - Dec 2026

Keywords

  • Cancer Predisposition Syndromes
  • Cancer Prevention
  • Cancer genetics
  • Familial Hematologic Malignancies
  • Genetic Risk Factors
  • Germline Predisposition
  • Plasma Cell Neoplasms
  • Rare Pathogenic Variants
  • Rare variants
  • Survival and Prognostic Biomarkers

ASJC Scopus subject areas

  • Hematology
  • Molecular Biology
  • Oncology
  • Cancer Research

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