Novel Inhibitors of InhA Efficiently Kill Mycobacterium tuberculosis under Aerobic and Anaerobic Conditions

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Veröffentlicht in:Antimicrobial Agents and Chemotherapy 2011-08, Vol.55 (8), p.3889-3898
Hauptverfasser: VILCHEZE, Catherine, BAUGHN, Anthony D, TUFARIELLO, Joann, LEUNG, Lawrence W, KUO, Mack, BASLER, Christopher F, ALLAND, David, SACCHETTINI, James C, FREUNDLICH, Joel S, JACOBS, William R
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container_issue 8
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container_title Antimicrobial Agents and Chemotherapy
container_volume 55
creator VILCHEZE, Catherine
BAUGHN, Anthony D
TUFARIELLO, Joann
LEUNG, Lawrence W
KUO, Mack
BASLER, Christopher F
ALLAND, David
SACCHETTINI, James C
FREUNDLICH, Joel S
JACOBS, William R
description Classifications Services AAC Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley Reddit StumbleUpon Twitter current issue AAC About AAC Subscribers Authors Reviewers Advertisers Inquiries from the Press Permissions & Commercial Reprints ASM Journals Public Access Policy AAC RSS Feeds 1752 N Street N.W. • Washington DC 20036 202.737.3600 • 202.942.9355 fax • journals@asmusa.org Print ISSN: 0066-4804 Online ISSN: 1098-6596 Copyright © 2014 by the American Society for Microbiology.   For an alternate route to AAC .asm.org, visit: AAC       
doi_str_mv 10.1128/AAC.00266-11
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Antiparasitic agents</subject><subject>Antitubercular Agents</subject><subject>Antitubercular Agents - chemistry</subject><subject>Antitubercular Agents - pharmacology</subject><subject>Bacterial Proteins</subject><subject>Bacterial Proteins - antagonists &amp; inhibitors</subject><subject>Bacterial Proteins - metabolism</subject><subject>Biological and medical sciences</subject><subject>Catalase - metabolism</subject><subject>Cells, Cultured</subject><subject>Drug Design</subject><subject>Drug Resistance, Multiple, Bacterial</subject><subject>Fatty Acid Synthase, Type I - antagonists &amp; inhibitors</subject><subject>Macrophages - drug effects</subject><subject>Macrophages - microbiology</subject><subject>Medical sciences</subject><subject>Mice</subject><subject>Mice, Inbred C57BL</subject><subject>Microbial Sensitivity Tests</subject><subject>Mycobacterium tuberculosis</subject><subject>Mycobacterium tuberculosis - drug effects</subject><subject>Oxidoreductases</subject><subject>Oxidoreductases - antagonists &amp; inhibitors</subject><subject>Pharmacology. 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subjects Aerobiosis
Anaerobiosis
Animals
Antibiotics. Antiinfectious agents. Antiparasitic agents
Antitubercular Agents
Antitubercular Agents - chemistry
Antitubercular Agents - pharmacology
Bacterial Proteins
Bacterial Proteins - antagonists & inhibitors
Bacterial Proteins - metabolism
Biological and medical sciences
Catalase - metabolism
Cells, Cultured
Drug Design
Drug Resistance, Multiple, Bacterial
Fatty Acid Synthase, Type I - antagonists & inhibitors
Macrophages - drug effects
Macrophages - microbiology
Medical sciences
Mice
Mice, Inbred C57BL
Microbial Sensitivity Tests
Mycobacterium tuberculosis
Mycobacterium tuberculosis - drug effects
Oxidoreductases
Oxidoreductases - antagonists & inhibitors
Pharmacology. Drug treatments
Plasmodium falciparum
Plasmodium falciparum - drug effects
Plasmodium falciparum - enzymology
Stearic Acids - metabolism
Structure-Activity Relationship
Susceptibility
Tuberculosis, Multidrug-Resistant - microbiology
title Novel Inhibitors of InhA Efficiently Kill Mycobacterium tuberculosis under Aerobic and Anaerobic Conditions
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