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N-Acylated Derivatives of Sulfamethoxazole Block Chlamydia Fatty Acid Synthesis and Interact with FabF.

Publication ,  Journal Article
Mojica, SA; Salin, O; Bastidas, RJ; Sunduru, N; Hedenström, M; Andersson, CD; Núñez-Otero, C; Engström, P; Valdivia, RH; Elofsson, M; Gylfe, Å
Published in: Antimicrob Agents Chemother
October 2017

The type II fatty acid synthesis (FASII) pathway is essential for bacterial lipid biosynthesis and continues to be a promising target for novel antibacterial compounds. Recently, it has been demonstrated that Chlamydia is capable of FASII and this pathway is indispensable for Chlamydia growth. Previously, a high-content screen with Chlamydia trachomatis-infected cells was performed, and acylated sulfonamides were identified to be potent growth inhibitors of the bacteria. C. trachomatis strains resistant to acylated sulfonamides were isolated by serial passage of a wild-type strain in the presence of low compound concentrations. Results from whole-genome sequencing of 10 isolates from two independent drug-resistant populations revealed that mutations that accumulated in fabF were predominant. Studies of the interaction between the FabF protein and small molecules showed that acylated sulfonamides directly bind to recombinant FabF in vitro and treatment of C. trachomatis-infected HeLa cells with the compounds leads to a decrease in the synthesis of Chlamydia fatty acids. This work demonstrates the importance of FASII for Chlamydia development and may lead to the development of new antimicrobials.

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Published In

Antimicrob Agents Chemother

DOI

EISSN

1098-6596

Publication Date

October 2017

Volume

61

Issue

10

Location

United States

Related Subject Headings

  • Vero Cells
  • Triclosan
  • Sulfamethoxazole
  • Microbiology
  • Humans
  • Hela Cells
  • HeLa Cells
  • Fatty Acids
  • Fatty Acid Synthesis Inhibitors
  • Fatty Acid Synthase, Type II
 

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Mojica, S. A., Salin, O., Bastidas, R. J., Sunduru, N., Hedenström, M., Andersson, C. D., … Gylfe, Å. (2017). N-Acylated Derivatives of Sulfamethoxazole Block Chlamydia Fatty Acid Synthesis and Interact with FabF. Antimicrob Agents Chemother, 61(10). https://doi.org/10.1128/AAC.00716-17
Mojica, Sergio A., Olli Salin, Robert J. Bastidas, Naresh Sunduru, Mattias Hedenström, C David Andersson, Carlos Núñez-Otero, et al. “N-Acylated Derivatives of Sulfamethoxazole Block Chlamydia Fatty Acid Synthesis and Interact with FabF.Antimicrob Agents Chemother 61, no. 10 (October 2017). https://doi.org/10.1128/AAC.00716-17.
Mojica SA, Salin O, Bastidas RJ, Sunduru N, Hedenström M, Andersson CD, et al. N-Acylated Derivatives of Sulfamethoxazole Block Chlamydia Fatty Acid Synthesis and Interact with FabF. Antimicrob Agents Chemother. 2017 Oct;61(10).
Mojica, Sergio A., et al. “N-Acylated Derivatives of Sulfamethoxazole Block Chlamydia Fatty Acid Synthesis and Interact with FabF.Antimicrob Agents Chemother, vol. 61, no. 10, Oct. 2017. Pubmed, doi:10.1128/AAC.00716-17.
Mojica SA, Salin O, Bastidas RJ, Sunduru N, Hedenström M, Andersson CD, Núñez-Otero C, Engström P, Valdivia RH, Elofsson M, Gylfe Å. N-Acylated Derivatives of Sulfamethoxazole Block Chlamydia Fatty Acid Synthesis and Interact with FabF. Antimicrob Agents Chemother. 2017 Oct;61(10).

Published In

Antimicrob Agents Chemother

DOI

EISSN

1098-6596

Publication Date

October 2017

Volume

61

Issue

10

Location

United States

Related Subject Headings

  • Vero Cells
  • Triclosan
  • Sulfamethoxazole
  • Microbiology
  • Humans
  • Hela Cells
  • HeLa Cells
  • Fatty Acids
  • Fatty Acid Synthesis Inhibitors
  • Fatty Acid Synthase, Type II