The bacterial RNA polymerase (RNAP) is a validated target for broad spectrum antibiotics. However, the efficiency of drugs is reduced by resistance. To discover novel RNAP inhibitors, a pharmacophore based on the alignment of described inhibitors was used for virtual screening. In an optimization process of hit compounds, novel derivatives with improved in vitro potency were discovered. Investigations concerning the molecular mechanism of RNAP inhibition reveal that they prevent the protein–protein interaction (PPI) between σ<sup>70</sup> and the RNAP core enzyme. Besides of reducing RNA formation, the inhibitors were shown to interfere with bacterial lipid biosynthesis. The compounds were active against Gram-positive pathogens and revealed...
CBR703 was reported to inhibit bacterial RNA polymerase (RNAP) and biofilm formation, considering it...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Bacterial resistance represents a major health problem worldwide and there is an urgent need to deve...
Rifampicin (Rif) is widely used in the treatment of Gram-positive and Gram-negative bacterial infect...
Bacterial resistance represents a major health threat worldwide, and the development of new therapeu...
Resistance to antibacterial agents has become a grave threat to public safety and human health. In t...
The bacterial RNA polymerase (RNAP) is an ideal target for the development of antimicrobial agents a...
Bacterial RNA polymerase (RNAP) represents a validated target for the development of broad-spectrum ...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Mechanistic understanding of antibiotic action can yield crucial insights that aid in the design of ...
The arise of antibiotic-resistant bacterial strains in an alarming rate has increased the interest i...
Inhibition of bacterial RNA polymerase (RNAP) is an established strategy for antituberculosis therap...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Bacterial resistance to antibiotics has been well documented since the emergence of resistance to th...
CBR703 was reported to inhibit bacterial RNA polymerase (RNAP) and biofilm formation, considering it...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Bacterial resistance represents a major health problem worldwide and there is an urgent need to deve...
Rifampicin (Rif) is widely used in the treatment of Gram-positive and Gram-negative bacterial infect...
Bacterial resistance represents a major health threat worldwide, and the development of new therapeu...
Resistance to antibacterial agents has become a grave threat to public safety and human health. In t...
The bacterial RNA polymerase (RNAP) is an ideal target for the development of antimicrobial agents a...
Bacterial RNA polymerase (RNAP) represents a validated target for the development of broad-spectrum ...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Mechanistic understanding of antibiotic action can yield crucial insights that aid in the design of ...
The arise of antibiotic-resistant bacterial strains in an alarming rate has increased the interest i...
Inhibition of bacterial RNA polymerase (RNAP) is an established strategy for antituberculosis therap...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Bacterial resistance to antibiotics has been well documented since the emergence of resistance to th...
CBR703 was reported to inhibit bacterial RNA polymerase (RNAP) and biofilm formation, considering it...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...