Topoisomerase I is an enzyme involved in the maintenance of genomic stability within an organism by mainly interacting with DNA to relieve topological strain. This serves as an essential target for inhibition as a means of preventing bacterial growth, and that was the goal of this study. More specifically, this project aimed to study the bactericidal activity of differing strains of Mycobacterium smegmatis: WT, M+, and Mnol. The project compared two different compounds, NSC 65858 and NSC 76027, as they expressed inhibitory mechanisms on topoisomerase I through various phases. The first phase employed the use of a MIC assay where both the M+ and Mnol strains showed similar values of growth inhibition. The values of these compounds shown to d...
The steady-state negative supercoiling of eubacterial genomes is maintained by the action of DNA top...
Drug resistant tuberculosis (TB) is a major worldwide health problem. In addition to the bacterial m...
<p>Amsacrine, which inhibits eukaryotic type II topoisomerase via DNA intercalation and stabilizatio...
Topoisomerase I is an enzyme involved in the maintenance of genomic stability within an organism by ...
Type I DNA topoisomerases from bacteria catalyse relaxation of negatively supercoiled DNA in a Mg2+ ...
m-AMSA, an established inhibitor of eukaryotic type II topoisomerases, exerts its cidal effect by bi...
We describe inhibition ofMycobacterium tuberculosis topoisomerase I (MttopoI), an essential mycobact...
Bacterial topoisomerase functions are required for regulation of DNA supercoiling and overcoming the...
Topoisomerases are an important class of enzymes for regulating the DNA transaction processes. Mycob...
Mycobacterium tuberculosis and the fast-growing species Mycobacterium abscessus are two important hu...
We have previously reported the inhibition of bacterial topoisomerase I activity by a fluoroquinophe...
and the fast-growing species are two important human pathogens causing persistent pulmonary infectio...
Mycobacterium tuberculosis and the fast-growing species Mycobacterium abscessus are two important hu...
Drug resistant tuberculosis (TB) is a major worldwide health problem. In addition to the bacterial m...
We have previously reported the inhibition of bacterial topoisomerase I activity by a fluoroquinophe...
The steady-state negative supercoiling of eubacterial genomes is maintained by the action of DNA top...
Drug resistant tuberculosis (TB) is a major worldwide health problem. In addition to the bacterial m...
<p>Amsacrine, which inhibits eukaryotic type II topoisomerase via DNA intercalation and stabilizatio...
Topoisomerase I is an enzyme involved in the maintenance of genomic stability within an organism by ...
Type I DNA topoisomerases from bacteria catalyse relaxation of negatively supercoiled DNA in a Mg2+ ...
m-AMSA, an established inhibitor of eukaryotic type II topoisomerases, exerts its cidal effect by bi...
We describe inhibition ofMycobacterium tuberculosis topoisomerase I (MttopoI), an essential mycobact...
Bacterial topoisomerase functions are required for regulation of DNA supercoiling and overcoming the...
Topoisomerases are an important class of enzymes for regulating the DNA transaction processes. Mycob...
Mycobacterium tuberculosis and the fast-growing species Mycobacterium abscessus are two important hu...
We have previously reported the inhibition of bacterial topoisomerase I activity by a fluoroquinophe...
and the fast-growing species are two important human pathogens causing persistent pulmonary infectio...
Mycobacterium tuberculosis and the fast-growing species Mycobacterium abscessus are two important hu...
Drug resistant tuberculosis (TB) is a major worldwide health problem. In addition to the bacterial m...
We have previously reported the inhibition of bacterial topoisomerase I activity by a fluoroquinophe...
The steady-state negative supercoiling of eubacterial genomes is maintained by the action of DNA top...
Drug resistant tuberculosis (TB) is a major worldwide health problem. In addition to the bacterial m...
<p>Amsacrine, which inhibits eukaryotic type II topoisomerase via DNA intercalation and stabilizatio...