Responsible for nearly two million deaths each year, the infectious disease tuberculosis remains a serious global health challenge. The emergence of multidrug-and extensively drug-resistant strains of Mycobacterium tuberculosis confounds control efforts, and new drugs with novel molecular targets are desperately needed. Here we describe lead compounds, the indoleamides, with potent activity against both drug-susceptible and drug-resistant strains of M. tuberculosis by targeting the mycolic acid transporter MmpL3. We identify a single mutation in mmpL3, which confers high resistance to the indoleamide class while remaining susceptible to currently used first-and second-line tuberculosis drugs, indicating a lack of cross-resistance. Important...
Tuberculosis (TB) is an infectious bacterial disease that kills approximately 1.3 million people eve...
The 1,5-diarylpyrrole derivative BM212 was previously shown to be active against multidrug-resistant...
Mycobacterium tuberculosis (Mtb) killed more people in 2017 than any other single infectious agent. ...
Responsible for nearly two million deaths each year, the infectious disease tuberculosis remains a s...
Our team had previously identified certain indolecarboxamides that represented a new chemical scaffo...
The continued spread of drug-resistant tuberculosis is one of the most pressing and complex challeng...
New chemotherapeutics active against multidrug-resistant Mycobacterium tuberculosis (M. tb) are urge...
Tuberculosis (TB), caused by Mycobacterium tuberculosis (M.tb), is one of the leading causes of deat...
<div><p>1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high <...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
Tuberculosis (TB) remains one of the leading causes of mortality and morbidity worldwide, with appro...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
ABSTRACT The Mycobacterium tuberculosis protein MmpL3 performs an essential role in cell wall synthe...
Tuberculosis (TB) is an infectious bacterial disease that kills approximately 1.3 million people eve...
The 1,5-diarylpyrrole derivative BM212 was previously shown to be active against multidrug-resistant...
Mycobacterium tuberculosis (Mtb) killed more people in 2017 than any other single infectious agent. ...
Responsible for nearly two million deaths each year, the infectious disease tuberculosis remains a s...
Our team had previously identified certain indolecarboxamides that represented a new chemical scaffo...
The continued spread of drug-resistant tuberculosis is one of the most pressing and complex challeng...
New chemotherapeutics active against multidrug-resistant Mycobacterium tuberculosis (M. tb) are urge...
Tuberculosis (TB), caused by Mycobacterium tuberculosis (M.tb), is one of the leading causes of deat...
<div><p>1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high <...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
Tuberculosis (TB) remains one of the leading causes of mortality and morbidity worldwide, with appro...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
1,5-Diphenyl pyrroles were previously identified as a class of compounds endowed with high in vitro ...
ABSTRACT The Mycobacterium tuberculosis protein MmpL3 performs an essential role in cell wall synthe...
Tuberculosis (TB) is an infectious bacterial disease that kills approximately 1.3 million people eve...
The 1,5-diarylpyrrole derivative BM212 was previously shown to be active against multidrug-resistant...
Mycobacterium tuberculosis (Mtb) killed more people in 2017 than any other single infectious agent. ...