Integrative gene expression profiling reveals G6PD-mediated resistance to RNA-directed nucleoside analogues in B-cell

Samuel K McBrayer1, Michael Yarrington, Jun Qian

  • 1Robert H. Lurie Comprehensive Cancer Center, Northwestern University, Chicago, Illinois, United States of America. s-mcbrayer@northwestern.edu

Plos One
|August 1, 2012
PubMed

Insights

Glucose-6-phosphate dehydrogenase (G6PD) antagonizes the effectiveness of 8-substituted adenosine analogues in B-lineage lymphoid malignancies. Targeting patients with normal G6PD levels may improve treatment efficacy for multiple myeloma and leukemia.

Area of Science:

  • Oncology
  • Pharmacology
  • Bioinformatics

Background:

  • Nucleoside analogues 8-amino-adenosine and 8-chloro-adenosine show selective cytotoxicity against B-lineage lymphoid malignancies like multiple myeloma (MM), chronic lymphocytic leukemia (CLL), and mantle cell lymphoma (MCL).
  • Positive early clinical data for 8-chloro-adenosine in CLL warrant further investigation into its mechanism of action and patient stratification.

Purpose of the Study:

  • To identify molecular determinants of responsiveness to 8-amino-adenosine and 8-chloro-adenosine in B-lineage lymphoid malignancies.
  • To understand the commonalities and differences in the mechanisms of action of these nucleoside analogues.
  • To define patient cohorts likely to benefit most from these novel therapeutic agents.

Main Methods:

  • A two-tiered chemoinformatic screen was employed, involving gene expression analysis in the NCI-60 cell line panel and paired MM/MCL cell lines.
  • Gene expression patterns associated with anti-tumor activity and differential susceptibility were elucidated.
  • Integration of gene expression datasets identified key molecular determinants, including glucose-6-phosphate dehydrogenase (G6PD).

Main Results:

  • A seven-gene signature was identified, prominently featuring G6PD, the rate-limiting enzyme of the pentose phosphate pathway (PPP).
  • G6PD was found to be frequently overexpressed in primary MM and CLL cells.
  • Loss-of-function and gain-of-function studies demonstrated that elevated G6PD expression is necessary for resistance to 8-amino- and 8-chloro-adenosine.

Conclusions:

  • G6PD activity directly antagonizes the cytotoxic effects of 8-substituted adenosine analogues.
  • Patients with B-cell malignancies and normal G6PD expression levels may represent a particularly responsive patient population for these agents.
  • Targeting G6PD or selecting patients based on G6PD expression could enhance therapeutic outcomes in lymphoid malignancies.