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Published on: March 18, 2015
Glyoxalase I inhibitors in cancer chemotherapy
D J Creighton1, Z-B Zheng, R Holewinski
1Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, MD, U.S.A. creighto@umbc.edu
Abstract:
Several recent developments suggest that the GSH-dependent glyoxalase enzyme system deserves renewed interest as a potential target for antitumour drug development. This summary focuses on the design and development of new classes of tumoricidal agents that specifically target this elementary detoxification pathway in order to induce elevated concentrations of cytotoxic methylglyoxal in tumour cells. Special emphasis is placed on structure- and mechanism-based inhibitors of GlxI (glyoxalase I), the first enzyme in the pathway. A new class of bivalent transition-state analogues is described that simultaneously bind the active site on each subunit of the homodimeric human GlxI, resulting in K (i) values as low as 1 nM. Also described is a new family of bromoacyl esters of GSH that function as active-site-directed irreversible inhibitors of GlxI. Newer prodrugs for delivering the GSH-based inhibitors into tumour cells include reactive sulphoxide esters that undergo acyl exchange with endogenous GSH to give the inhibitors, and polymethacrylamide esters of the inhibitors that are potentially tumour-selective on the basis of the "enhanced permeability and retention effect". Finally, a preliminary evaluation of the efficacy of selected GlxI inhibitors in tumour-bearing mice is given.
Insights
Researchers are developing novel tumoricidal agents targeting the glyoxalase enzyme system. These agents aim to increase cytotoxic methylglyoxal in tumor cells, offering a new avenue for cancer drug development.
Area of Science:
- Biochemistry
- Medicinal Chemistry
- Oncology
Background:
- The glyoxalase enzyme system, dependent on glutathione (GSH), is a potential target for anticancer drug development.
- Elevating cytotoxic methylglyoxal in tumor cells via this pathway is a strategy for tumoricidal agent design.
Purpose of the Study:
- To design and develop novel tumoricidal agents targeting the glyoxalase pathway.
- To focus on structure- and mechanism-based inhibitors of glyoxalase I (GlxI).
Main Methods:
- Development of bivalent transition-state analogues targeting human GlxI.
- Synthesis of bromoacyl esters of GSH as irreversible GlxI inhibitors.
- Design of prodrugs, including sulphoxide esters and polymethacrylamide esters, for enhanced tumor cell delivery.
Main Results:
- Bivalent analogues achieved K(i) values as low as 1 nM by binding to the homodimeric human GlxI.
- Bromoacyl esters of GSH demonstrated active-site-directed irreversible inhibition of GlxI.
- Prodrugs showed potential for tumor-selective delivery, with preliminary efficacy evaluation in tumor-bearing mice.
Conclusions:
- Novel inhibitors of glyoxalase I have been developed, demonstrating potent activity.
- These inhibitors and their prodrugs represent promising candidates for anticancer drug development targeting the glyoxalase system.
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