Author:
Dragset Marte S.,Poce Giovanna,Alfonso Salvatore,Padilla-Benavides Teresita,Ioerger Thomas R.,Kaneko Takushi,Sacchettini James C.,Biava Mariangela,Parish Tanya,Argüello José M.,Steigedal Magnus,Rubin Eric J.
Abstract
ABSTRACTEfficient iron acquisition is crucial for the pathogenesis ofMycobacterium tuberculosis. Mycobacterial iron uptake and metabolism are therefore attractive targets for antitubercular drug development. Resistance mutations against a novel pyrazolopyrimidinone compound (PZP) that is active againstM. tuberculosishave been identified within the gene cluster encoding the ESX-3 type VII secretion system. ESX-3 is required for mycobacterial iron acquisition through the mycobactin siderophore pathway, which could indicate that PZP restricts mycobacterial growth by targeting ESX-3 and thus iron uptake. Surprisingly, we show that ESX-3 is not the cellular target of the compound. We demonstrate that PZP indeed targets iron metabolism; however, we found that instead of inhibiting uptake of iron, PZP acts as an iron chelator, and we present evidence that the compound restricts mycobacterial growth by chelating intrabacterial iron. Thus, we have unraveled the unexpected mechanism of a novel antimycobacterial compound.
Publisher
American Society for Microbiology
Subject
Infectious Diseases,Pharmacology (medical),Pharmacology
Cited by
35 articles.
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