A DNA target-enrichment approach to detect mutations, copy number changes and immunoglobulin translocations in

N Bolli1,2, Y Li1, V Sathiaseelan1

  • 1Cancer Genome Project, Wellcome Trust Sanger Institute, Cambridge, UK.

Blood Cancer Journal
|September 3, 2016
PubMed

Insights

A new next-generation sequencing (NGS) method simultaneously analyzes gene mutations, copy number changes, and IGH translocations in multiple myeloma (MM). This approach identifies potential biomarkers for improved diagnosis and prognosis in MM patients.

Area of Science:

  • Genomics
  • Oncology
  • Molecular Diagnostics

Background:

  • Routine diagnostics for multiple myeloma (MM) do not investigate genomic lesions.
  • Current cytogenetic studies offer limited impact on therapeutic decisions.
  • The clinical value of recently described recurrently mutated genes in MM is undefined.

Purpose of the Study:

  • To develop clinical-grade strategies for investigating the genomic landscape of MM.
  • To integrate novel and established prognostic markers for multiple myeloma.
  • To enable simultaneous analysis of gene mutations, copy number changes, and IGH translocations.

Main Methods:

  • Developed a target-enrichment strategy followed by next-generation sequencing (NGS).
  • Streamlined high-throughput analysis of genomic alterations in MM samples.
  • Validated the approach using a panel of MM cell lines and integrated published NGS data.

Main Results:

  • Identified 548 likely oncogenic mutations across 182 genes.
  • Detected chromosomal gains/losses with accuracy comparable to conventional arrays.
  • Identified IGH translocations with high predictive value.

Conclusions:

  • The developed NGS approach enables comprehensive genomic profiling of MM.
  • This strategy can identify novel biomarkers with potential clinical relevance in myeloma.
  • Findings support the integration of advanced genomic analysis into MM diagnostics and prognostics.