Cyclothialidine, a natural product isolated from Streptomyces .filipinensis NR0484, has been proven to be a potent and selective inhibitor of the bacterial enzyme DNA gyrase. Gyrase inhibition results in cell death, the enzyme being the target of several currently used antibiotics. Cyclothialidine showed poor activity against whole bacterial cells, highlighting scope for improvement regarding cell membrane pemeability in order for the full potential of this new class of antibiotics to be realised, Structurally, cyclothialidine contains a 12-membered lactone ring which is partly integrated into a pentapeptide chain, with a substituted aromatic moiety bordering the lactone, Retrosynthetically it can be traced back to cis-3-hydroxyproline, 3,5...
Antimicrobial resistance (AMR) poses an existential threat to humanity. By 2050, it is predicted tha...
Bacterial DNA gyrase is an important target for the development of novel antibacterial drugs, which ...
The development of antibacterial drugs based on novel chemotypes is essential to the future manageme...
Since cyclothialidine was discovered as the most active DNA gyrase inhibitor in 1994, enormous effor...
Since cyclothialidine was discovered as the most active DNA gyrase inhibitor in 1994, enormous effor...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
The impacts of multi-drug resistant bacteria have an estimated global cost of $40 billion and provid...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
The impacts of multi-drug resistant bacteria have an estimated global cost of $40 billion and provid...
We designed and synthesized a series of inhibitors of the bacterial enzymes DNA gyrase and DNA topoi...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
The rapidly increasing rate of antibiotic resistance is of great concern. Approximately two million ...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
doi: 10.1021/acsmedchemlett.0c00416We designed and synthesized a series of inhibitors of the bacteri...
We designed and synthesized a series of inhibitors of the bacterial enzymes DNA gyrase and DNA topoi...
Antimicrobial resistance (AMR) poses an existential threat to humanity. By 2050, it is predicted tha...
Bacterial DNA gyrase is an important target for the development of novel antibacterial drugs, which ...
The development of antibacterial drugs based on novel chemotypes is essential to the future manageme...
Since cyclothialidine was discovered as the most active DNA gyrase inhibitor in 1994, enormous effor...
Since cyclothialidine was discovered as the most active DNA gyrase inhibitor in 1994, enormous effor...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
The impacts of multi-drug resistant bacteria have an estimated global cost of $40 billion and provid...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
The impacts of multi-drug resistant bacteria have an estimated global cost of $40 billion and provid...
We designed and synthesized a series of inhibitors of the bacterial enzymes DNA gyrase and DNA topoi...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
The rapidly increasing rate of antibiotic resistance is of great concern. Approximately two million ...
ATP competitive inhibitors of DNA gyrase and topoisomerase IV have great therapeutic potential, but ...
doi: 10.1021/acsmedchemlett.0c00416We designed and synthesized a series of inhibitors of the bacteri...
We designed and synthesized a series of inhibitors of the bacterial enzymes DNA gyrase and DNA topoi...
Antimicrobial resistance (AMR) poses an existential threat to humanity. By 2050, it is predicted tha...
Bacterial DNA gyrase is an important target for the development of novel antibacterial drugs, which ...
The development of antibacterial drugs based on novel chemotypes is essential to the future manageme...