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PMID: 10609550 Published · ppublish English Journal Article

Use of genomics and combinatorial chemistry in the development of new antimycobacterial drugs.

Biochemical pharmacology ·Vol. 59 ·No. 3 ·2000-02-01 ·Pages 221-31

Barry CE, Slayden RA, Sampson AE, Lee RE

Abstract

With the completion of the genome of Mycobacterium tuberculosis comes the promise of a new generation of potent drugs to combat the emerging epidemic of multiply drug-resistant isolates. Translating this genomic information into realistic assays, valid targets, and preclinical drug candidates represents the next great hope in tuberculosis control. We propose a paradigm for exploiting the genome to inform the development of novel antituberculars, utilizing the techniques of differential gene expression as monitored by DNA microarrays coupled with the emerging discipline of combinatorial chemistry. A comparison of currently used antituberculars with the properties of other pharmaceuticals suggests that such compounds will have a defined range of physiochemical properties. In general, we can expect the next generation of antituberculars to be small, relatively hydrophilic molecules that bind tightly to specific cellular targets. Many current antimycobacterials require some form of cellular activation (e.g. the activation of isoniazid by a catalase-peroxidase). Activation corresponds to the oxidative, reductive, or hydrolytic unmasking of reactive groups, which occurs with many current antimycobacterial prodrugs. Understanding the mechanisms involved in activation of current antimycobacterial therapeutics also may facilitate the development of alternative activation strategies or of analogs that require no such processes.

MeSH Terms
Animals Antitubercular Agents/chemistry,metabolism,pharmacology,therapeutic use Biotransformation Combinatorial Chemistry Techniques Drug Design Drug Resistance, Microbial Genome, Bacterial Humans Microbial Sensitivity Tests Mycobacterium tuberculosis/chemistry,drug effects,genetics Prodrugs/metabolism Structure-Activity Relationship Tuberculosis/drug therapy
Chemicals
Antitubercular Agents Prodrugs
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Barry C E
Tuberculosis Research Section, Laboratory of Host Defenses, NIAID, NIH, Rockville, MD 20852, USA. [email protected]
Slayden R A
Sampson A E
Lee R E
Article Info
Journal
Biochemical pharmacology
Abbr.
Biochem Pharmacol
ISSN
0006-2952
Published
2000-02-01
Pages
221-31
Language
English
Region
England
NLM ID
0101032
Subset
IM
Grants
Intramural NIH HHS · Z01 AI000693-15 · United States
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