A series of hybrid compounds that incorporated anthranilic acid with activated 1H-indoles through a glyoxylamide linker were designed to target bacterial RNA polymerase holoenzyme formation using computational docking. Synthesis, in vitro transcription inhibition assays, and biological testing of the hybrids identified a range of potent anti-transcription inhibitors with activity against a range of pathogenic bacteria with MICs as low as 3.1 μM. A structure activity relationship study identified the key structural components necessary for inhibition of both bacterial growth and transcription. Correlation of in vitro transcription inhibition activity with in vivo mechanism of action was established using fluorescence microscopy and resistanc...
11Bacterial resistance represents a major health threat worldwide, and the development of new therap...
Our ongoing research focused on targeting transcription initiation in bacteria has resulted in synth...
The bacterial RNA polymerase (RNAP) is an ideal target for the development of antimicrobial agents a...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Knoevenagel condensation was employed to generate a set of molecules potentially capable of inhibiti...
Bacterial resistance represents a major health problem worldwide and there is an urgent need to deve...
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...
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...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
With the rise of antimicrobial resistance as a significant global health threat the need for therape...
11Bacterial resistance represents a major health threat worldwide, and the development of new therap...
Our ongoing research focused on targeting transcription initiation in bacteria has resulted in synth...
The bacterial RNA polymerase (RNAP) is an ideal target for the development of antimicrobial agents a...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Bacterial transcription is a proven target for antibacterial research. However, most of the known in...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
Knoevenagel condensation was employed to generate a set of molecules potentially capable of inhibiti...
Bacterial resistance represents a major health problem worldwide and there is an urgent need to deve...
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...
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...
Antibiotic resistance is a growing global problem, with very few new compounds in development. Bacte...
With the rise of antimicrobial resistance as a significant global health threat the need for therape...
11Bacterial resistance represents a major health threat worldwide, and the development of new therap...
Our ongoing research focused on targeting transcription initiation in bacteria has resulted in synth...
The bacterial RNA polymerase (RNAP) is an ideal target for the development of antimicrobial agents a...