Ravishankar Sudha, Ambady Anisha, Awasthy Disha, Mudugal Naina Vinay, Menasinakai Sreenivasaiah, Jatheendranath Sandesh, Guptha Supreeth, Sharma Sreevalli, Balakrishnan Gayathri, Nandishaiah Radha, Ramachandran Vasanthi, Eyermann Charles J, Reck Folkert, Rudrapatna Suresh, Sambandamurthy Vasan K, Sharma Umender K
AstraZeneca India Pvt. Ltd., Bellary Road, Hebbal, Bangalore 560024, India.
AstraZeneca India Pvt. Ltd., Bellary Road, Hebbal, Bangalore 560024, India.
Tuberculosis (Edinb). 2015 Sep;95(5):589-98. doi: 10.1016/j.tube.2015.05.004. Epub 2015 May 27.
DNA topoisomerases perform the essential function of maintaining DNA topology in prokaryotes. DNA gyrase, an essential enzyme that introduces negative supercoils, is a clinically validated target. However, topoisomerase I (Topo I), an enzyme responsible for DNA relaxation has received less attention as an antibacterial target, probably due to the ambiguity over its essentiality in many organisms. The Mycobacterium tuberculosis genome harbors a single topA gene with no obvious redundancy in its function suggesting an essential role. The topA gene could be inactivated only in the presence of a complementing copy of the gene in M. tuberculosis. Furthermore, down-regulation of topA in a genetically engineered strain of M. tuberculosis resulted in loss of bacterial viability which correlated with a concomitant depletion of intracellular Topo I levels. The topA knockdown strain of M. tuberculosis failed to establish infection in a murine model of TB and was cleared from lungs in two months post infection. Phenotypic screening of a Topo I overexpression strain led to the identification of an inhibitor, thereby providing chemical validation of this target. Thus, our work confirms the attractiveness of Topo I as an anti-mycobacterial target.
DNA拓扑异构酶在原核生物中执行维持DNA拓扑结构的重要功能。DNA促旋酶是一种引入负超螺旋的必需酶,是一个经过临床验证的靶点。然而,作为一种抗菌靶点,负责DNA松弛的拓扑异构酶I(Topo I)受到的关注较少,这可能是因为它在许多生物体中的必要性存在不确定性。结核分枝杆菌基因组含有一个单一的topA基因,其功能没有明显冗余,表明其具有重要作用。只有在结核分枝杆菌中存在该基因的互补拷贝时,topA基因才能被灭活。此外,在基因工程改造的结核分枝杆菌菌株中下调topA会导致细菌活力丧失,这与细胞内Topo I水平的相应降低相关。结核分枝杆菌的topA基因敲低菌株在结核病小鼠模型中未能建立感染,并且在感染后两个月从肺部清除。对Topo I过表达菌株进行表型筛选导致鉴定出一种抑制剂,从而对该靶点进行了化学验证。因此,我们的工作证实了Topo I作为抗分枝杆菌靶点的吸引力。