AbstractWe report the identification of a novel two-component system in Mycobacterium tuberculosis. We show that the putative histidine kinase with the genomic locus tag Rv3220c is able to self-phosphorylate in the presence of Mg2+/ATP and subsequently transfer the phosphoryl group to a novel response regulator PdtaR. This creates a biochemical link between the two proteins and establishes a newly identified two component system, which acts at the level of transcriptional antitermination. We also suggest that this system has potential for the development of lead compounds for inhibition of phosphotransfer
Tuberculosis, caused by the intracellular pathogen Mycobacterium tuberculosis, is one of the most pr...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Tuberculosis, caused by the intracellular pathogen Mycobacterium tuberculosis, is one of the most pr...
AbstractThe two-component signal transduction system from Mycobacterium tuberculosis bears a unique ...
AbstractThe two-component signal transduction system from Mycobacterium tuberculosis bears a unique ...
DevR-DevS (Rv3133c-Rv3132c) and DevR-Rv2027c have been established through their autophosphorylation...
In Mycobacterium tuberculosis Rv1027c-Rv1028c genes are predicted to encode KdpDE two component syst...
In Mycobacterium tuberculosis Rv1027c-Rv1028c genes are predicted to encode KdpDE two component syst...
AbstractRv2027c is a putative orphan histidine sensor kinase that bears strong homology to DevS of t...
International audienceReversible protein phosphorylation is a major regulation mechanism of fundamen...
Reversible protein phosphorylation is a major regulation mechanism of fundamental biological process...
DevR-DevS (Rv3133c-Rv3132c) and DevR-Rv2027c have been established through their autophosphorylation...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Rv2027c is a putative orphan histidine sensor kinase that bears strong homology to DevS of the hypox...
The Mycobacterium tuberculosis genome encodes 11 Ser/Thr protein kinases. These protein kinases are ...
Tuberculosis, caused by the intracellular pathogen Mycobacterium tuberculosis, is one of the most pr...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Tuberculosis, caused by the intracellular pathogen Mycobacterium tuberculosis, is one of the most pr...
AbstractThe two-component signal transduction system from Mycobacterium tuberculosis bears a unique ...
AbstractThe two-component signal transduction system from Mycobacterium tuberculosis bears a unique ...
DevR-DevS (Rv3133c-Rv3132c) and DevR-Rv2027c have been established through their autophosphorylation...
In Mycobacterium tuberculosis Rv1027c-Rv1028c genes are predicted to encode KdpDE two component syst...
In Mycobacterium tuberculosis Rv1027c-Rv1028c genes are predicted to encode KdpDE two component syst...
AbstractRv2027c is a putative orphan histidine sensor kinase that bears strong homology to DevS of t...
International audienceReversible protein phosphorylation is a major regulation mechanism of fundamen...
Reversible protein phosphorylation is a major regulation mechanism of fundamental biological process...
DevR-DevS (Rv3133c-Rv3132c) and DevR-Rv2027c have been established through their autophosphorylation...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Rv2027c is a putative orphan histidine sensor kinase that bears strong homology to DevS of the hypox...
The Mycobacterium tuberculosis genome encodes 11 Ser/Thr protein kinases. These protein kinases are ...
Tuberculosis, caused by the intracellular pathogen Mycobacterium tuberculosis, is one of the most pr...
Two-component signaling systems (TCSs) are central to bacterial adaptation. However, the mechanisms ...
Tuberculosis, caused by the intracellular pathogen Mycobacterium tuberculosis, is one of the most pr...