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Transposon mutagenesis reveals fludarabine resistance mechanisms in chronic lymphocytic leukemia

  • Tatjana Pandzic
  • , Jimmy Larsson
  • , Liqun He
  • , Snehangshu Kundu
  • , Kenneth Ban
  • , Muhammad Akhtar-Ali
  • , Anders R. Hellström
  • , Anna Schuh
  • , Ruth Clifford
  • , Stuart J. Blakemore
  • , Jonathan C. Strefford
  • , Tycho Baumann
  • , Armando Lopez-Guillermo
  • , Elias Campo
  • , Viktor Ljungström
  • , Larry Mansouri
  • , Richard Rosenquist
  • , Tobias Sjöblom
  • , Mats Hellström
  • Uppsala University
  • Agency for Science, Technology and Research, Singapore
  • University of Oxford
  • University of Southampton
  • Hospital Clinic Barcelona
  • University of Barcelona

Research output: Contribution to journalArticlepeer-review

Abstract

Purpose: To identify resistance mechanisms for the chemotherapeutic drug fludarabine in chronic lymphocytic leukemia (CLL), as innate and acquired resistance to fludarabine-based chemotherapy represents a major challenge for long-term disease control. Experimental Design: We used piggyBac transposon-mediated mutagenesis, combined with next-generation sequencing, to identify genes that confer resistance to fludarabine in a human CLL cell line. Results: In total, this screen identified 782 genes with transposon integrations in fludarabine-resistant pools of cells. One of the identified genes is a known resistance mediator DCK (deoxycytidine kinase), which encodes an enzyme that is essential for the phosphorylation of the prodrug to the active metabolite. BMP2K, a gene not previously linked to CLL, was also identified as a modulator of response to fludarabine. In addition, 10 of 782 transposon-targeted genes had previously been implicated in treatment resistance based on somatic mutations seen in patients refractory to fludarabine-based therapy. Functional characterization of these genes supported a significant role for ARID5B and BRAF in fludarabine sensitivity. Finally, pathway analysis of transposon-targeted genes and RNA-seq profiling of fludarabine-resistant cells suggested deregulated MAPK signaling as involved in mediating drug resistance in CLL. Conclusions: To our knowledge, this is the first forward genetic screen for chemotherapy resistance in CLL. The screen pinpointed novel genes and pathways involved in fludarabine resistance along with previously known resistance mechanisms. Transposon screens can therefore aid interpretation of cancer genome sequencing data in the identification of genes modifying sensitivity to chemotherapy.

Original languageEnglish
Pages (from-to)6217-6227
Number of pages11
JournalClinical Cancer Research
Volume22
Issue number24
DOIs
Publication statusPublished - 15 Dec 2016
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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