The topological homeostasis of bacterial chromosomes is maintained by the balance between compaction and the topological organization of genomes. Two classes of proteins play major roles in chromosome organization: the nucleoid-associated proteins (NAPs) and topoisomerases. The NAPs bind DNA to compact the chromosome, whereas topoisomerases catalytically remove or introduce supercoils into the genome. We demonstrate that HU, a major NAP of Mycobacterium tuberculosis specifically stimulates the DNA relaxation ability of mycobacterial topoisomerase I (TopoI) at lower concentrations but interferes at higher concentrations. A direct physical interaction between M. tuberculosis HU (MtHU) and TopoI is necessary for enhancing enzyme activity both ...
We report here a distinct mechanism of interaction between topoisomerase I and RNA polymerase in Myc...
Bacterial DNA topoisomerase I (topoI) catalyzes relaxation of negatively supercoiled DNA. The enzyme...
Bacterial DNA topoisomerase I (topoI) catalyzes relaxation of negatively supercoiled DNA. The enzyme...
The topological homeostasis of bacterial chromosomes is maintained by the balance between compaction...
The topological homeostasis of bacterial chromo-somes is maintained by the balance between com-pacti...
Nucleoid-associated proteins (NAPs) in bacteria contribute to key activities such as DNA compaction,...
DNA Topoisomerase I (TopoI) in eubacteria is the principle DNA relaxase, belonging to Type 1A group....
Comparison of Mycobacterium tuberculosis with Escherichia coli reveals a reduction in the diversity ...
DNA topoisomerases catalyse essential DNA transaction processes in order to attain the balanced topo...
The opposing catalytic activities of topoisomerase I (TopoI/relaxase) and DNA gyrase (supercoiling e...
The opposing catalytic activities of topoisomerase I (TopoI/relaxase) and DNA gyrase (supercoiling e...
DNA topoisomerases catalyse essential DNA transaction processes in order to attain the balanced topo...
The steady-state negative supercoiling of eubacterial genomes is maintained by the action of DNA top...
Type I DNA topoisomerases from bacteria catalyse relaxation of negatively supercoiled DNA in a Mg2+ ...
Topoisomerases are an important class of enzymes for regulating the DNA transaction processes. Mycob...
We report here a distinct mechanism of interaction between topoisomerase I and RNA polymerase in Myc...
Bacterial DNA topoisomerase I (topoI) catalyzes relaxation of negatively supercoiled DNA. The enzyme...
Bacterial DNA topoisomerase I (topoI) catalyzes relaxation of negatively supercoiled DNA. The enzyme...
The topological homeostasis of bacterial chromosomes is maintained by the balance between compaction...
The topological homeostasis of bacterial chromo-somes is maintained by the balance between com-pacti...
Nucleoid-associated proteins (NAPs) in bacteria contribute to key activities such as DNA compaction,...
DNA Topoisomerase I (TopoI) in eubacteria is the principle DNA relaxase, belonging to Type 1A group....
Comparison of Mycobacterium tuberculosis with Escherichia coli reveals a reduction in the diversity ...
DNA topoisomerases catalyse essential DNA transaction processes in order to attain the balanced topo...
The opposing catalytic activities of topoisomerase I (TopoI/relaxase) and DNA gyrase (supercoiling e...
The opposing catalytic activities of topoisomerase I (TopoI/relaxase) and DNA gyrase (supercoiling e...
DNA topoisomerases catalyse essential DNA transaction processes in order to attain the balanced topo...
The steady-state negative supercoiling of eubacterial genomes is maintained by the action of DNA top...
Type I DNA topoisomerases from bacteria catalyse relaxation of negatively supercoiled DNA in a Mg2+ ...
Topoisomerases are an important class of enzymes for regulating the DNA transaction processes. Mycob...
We report here a distinct mechanism of interaction between topoisomerase I and RNA polymerase in Myc...
Bacterial DNA topoisomerase I (topoI) catalyzes relaxation of negatively supercoiled DNA. The enzyme...
Bacterial DNA topoisomerase I (topoI) catalyzes relaxation of negatively supercoiled DNA. The enzyme...