4.4 Article

Structure-activity Relationship Studies of Microbiologically Active Thiosemicarbazides Derived from Hydroxybenzoic Acid Hydrazides

Journal

CHEMICAL BIOLOGY & DRUG DESIGN
Volume 85, Issue 3, Pages 315-325

Publisher

WILEY
DOI: 10.1111/cbdd.12392

Keywords

drug design; enzymatic mechanism; structure-activity relationships; thiosemicarbazide derivatives

Funding

  1. National Science Centre [2012/05/D/NZ7/02278]

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Forty-five derivatives of thiosemicarbazide were synthesized, and their antibacterial activity against Gram-positive and Gram-negative bacteria was evaluated. Some of the described compounds exhibited interesting activity against reference strains of Gram-positive bacteria, whereas only two derivatives had the ability to inhibit the growth of Gram-negative species (Escherichia coliATCC 25922, Klebsiella pneumoniaeATCC 13883, Proteus mirabilisATCC 12453). The most potent antimicrobial activity was observed in the cases of salicylic acid hydrazide derivatives. The differences in activity inspired us to conduct conformational analysis using molecular mechanics level. The obtained results suggest that the molecule geometry, especially at the N4-terminus of thiosemicarbazide skeleton, determines the antibacterial activity. Unfortunately, in opposition to what we expected, only one of the tested compounds inhibited the activity of the topoIV enzyme, and none of them was active against DNA gyrase.

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