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Sci Rep ; 10(1): 15418, 2020 09 22.
Article in English | MEDLINE | ID: mdl-32963303

ABSTRACT

Streptococcus pneumoniae choline kinase (sChoK) has previously been proposed as a drug target, yet the effectiveness of the first and only known inhibitor of sChoK, HC-3, is in the millimolar range. The aim of this study was thus to further validate sChoK as a potential therapeutic target by discovering more powerful sChoK inhibitors. LDH/PK and colorimetric enzymatic assays revealed two promising sChoK inhibitor leads RSM-932A and MN58b that were discovered with IC50 of 0.5 and 150 µM, respectively, and were shown to be 2-4 magnitudes more potent than the previously discovered inhibitor HC-3. Culture assays showed that the minimum inhibitory concentration (MIC) of RSM-932A and MN58b for S. pneumoniae was 0.4 µM and 10 µM, respectively, and the minimum lethal concentration (MLC) was 1.6 µM and 20 µM, respectively. Western blot monitoring of teichoic acid production revealed differential patterns in response to each inhibitor. In addition, both inhibitors possessed a bacteriostatic mechanism of action, and neither interfered with the autolytic effects of vancomycin. Cells treated with MN58b but not RSM-932A were more sensitive to a phosphate induced autolysis with respect to the untreated cells. SEM studies revealed that MN58b distorted the cell wall, a result consistent with the apparent teichoic acid changes. Two novel and more highly potent putative inhibitors of sChoK, MN58b and RSM-932A, were characterized in this study. However, the effects of sChoK inhibitors can vary at the cellular level. sChoK inhibition is a promising avenue to follow in the development of therapeutics for treatment of S. pneumoniae.


Subject(s)
Choline Kinase/metabolism , Protein Kinase Inhibitors/pharmacology , Streptococcus pneumoniae/drug effects , Aniline Compounds/pharmacology , Autolysis/metabolism , Butanes/pharmacology , Cell Wall/drug effects , Cell Wall/metabolism , Microbial Sensitivity Tests , Pyridinium Compounds/pharmacology , Quinolinium Compounds/pharmacology , Streptococcus pneumoniae/metabolism , Teichoic Acids/metabolism
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