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  4. Identification of aminopyrimidine-sulfonamides as potent modulators of Wag31-mediated cell elongation in mycobacteria
 
research article

Identification of aminopyrimidine-sulfonamides as potent modulators of Wag31-mediated cell elongation in mycobacteria

Singh, Vinayak
•
Dhar, Neeraj  
•
Pato, Janos
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2017
Molecular Microbiology

There is an urgent need to discover new antitubercular agents with novel mechanisms of action in order to tackle the scourge of drug-resistant tuberculosis. Here, we report the identification of such a molecule - an AminoPYrimidine-Sulfonamide (APYS1) that has potent, bactericidal activity against M. tuberculosis. Mutations in APYS1-resistant M. tuberculosis mapped exclusively to wag31, a gene that encodes a scaffolding protein thought to orchestrate cell elongation. Recombineering confirmed that a Gln201Arg mutation in Wag31 was sufficient to cause resistance to APYS1, however, neither overexpression nor conditional depletion of wag31 impacted M. tuberculosis susceptibility to this compound. In contrast, expression of the wildtype allele of wag31 in APYS1-resistant M. tuberculosis was dominant and restored susceptibility to APYS1 to wildtype levels. Time-lapse imaging and scanning electron microscopy revealed that APYS1 caused gross malformation of the old pole of M. tuberculosis, with eventual lysis. These effects resembled the morphological changes observed following transcriptional silencing of wag31 in M. tuberculosis. These data show that Wag31 is likely not the direct target of APYS1, but the striking phenotypic similarity between APYS1 exposure and genetic depletion of Wag31 in M. tuberculosis suggests that APYS1 might indirectly affect Wag31 through an as yet unknown mechanism.

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Type
research article
DOI
10.1111/mmi.13535
Web of Science ID

WOS:000394688100004

Author(s)
Singh, Vinayak
Dhar, Neeraj  
Pato, Janos
Kolly, Gaelle S.
Kordulakova, Jana
Forbak, Martin
Evans, Joanna C.
Szekely, Rita
Rybniker, Jan
Palcekova, Zuzana
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Date Issued

2017

Publisher

Wiley-Blackwell

Published in
Molecular Microbiology
Volume

103

Issue

1

Start page

13

End page

25

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPCOL  
UPKIN  
LIP  
Available on Infoscience
May 1, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/136703
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