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Published on: December 9, 2016
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
Abstract:
The nucleoside analogues 8-amino-adenosine and 8-chloro-adenosine have been investigated in the context of B-lineage lymphoid malignancies by our laboratories due to the selective cytotoxicity they exhibit toward multiple myeloma (MM), chronic lymphocytic leukemia (CLL), and mantle cell lymphoma (MCL) cell lines and primary cells. Encouraging pharmacokinetic and pharmacodynamic properties of 8-chloro-adenosine being documented in an ongoing Phase I trial in CLL provide additional impetus for the study of these promising drugs. In order to foster a deeper understanding of the commonalities between their mechanisms of action and gain insight into specific patient cohorts positioned to achieve maximal benefit from treatment, we devised a novel two-tiered chemoinformatic screen to identify molecular determinants of responsiveness to these compounds. This screen entailed: 1) the elucidation of gene expression patterns highly associated with the anti-tumor activity of 8-chloro-adenosine in the NCI-60 cell line panel, 2) characterization of altered transcript abundances between paired MM and MCL cell lines exhibiting differential susceptibility to 8-amino-adenosine, and 3) integration of the resulting datasets. This approach generated a signature of seven unique genes including G6PD which encodes the rate-determining enzyme of the pentose phosphate pathway (PPP), glucose-6-phosphate dehydrogenase. Bioinformatic analysis of primary cell gene expression data demonstrated that G6PD is frequently overexpressed in MM and CLL, highlighting the potential clinical implications of this finding. Utilizing the paired sensitive and resistant MM and MCL cell lines as a model system, we go on to demonstrate through loss-of-function and gain-of-function studies that elevated G6PD expression is necessary to maintain resistance to 8-amino- and 8-chloro-adenosine but insufficient to induce de novo resistance in sensitive cells. Taken together, these results indicate that G6PD activity antagonizes the cytotoxicity of 8-substituted adenosine analogues and suggests that administration of these agents to patients with B-cell malignancies exhibiting normal levels of G6PD expression may be particularly efficacious.
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.
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