Chownk_2017_Future.Microbiol_12_527

Reference

Title : mesT, a unique epoxide hydrolase, is essential for optimal growth of Mycobacterium tuberculosis in the presence of styrene oxide - Chownk_2017_Future.Microbiol_12_527
Author(s) : Chownk M , Sharma A , Singh K , Kaur J
Ref : Future Microbiol , 12 :527 , 2017
Abstract :

AIM: mesT of Mycobacterium tuberculosis, a hypothetical/putative epoxide hydrolase, is predicted to convert toxic epoxides to the more water-soluble and less toxic diols. Detailed characterization of the protein was carried out.
RESULTS: mesT demonstrated esterase as well as epoxide hydrolase activity. It was membrane bound and was upregulated under hypoxic conditions. The enzyme was able to degrade styrene oxide. The presence of antisense against this gene resulted in the inhibition of in vitro bacterial growth/survival in the presence of styrene oxide. Conclusion & future perspective: We demonstrated that mesT possessed epoxide hydrolase activity and styrene oxide might be its physiological substrate. Inhibition of mesT reduced the growth of the bacteria in presence of styrene oxide and its expression under hypoxic condition suggested its role in intracellular survival of bacteria.

PubMedSearch : Chownk_2017_Future.Microbiol_12_527
PubMedID: 28492351
Gene_locus related to this paper: myctu-LIPS

Related information

Substrate Styrene-oxide
Gene_locus myctu-LIPS

Citations formats

Chownk M, Sharma A, Singh K, Kaur J (2017)
mesT, a unique epoxide hydrolase, is essential for optimal growth of Mycobacterium tuberculosis in the presence of styrene oxide
Future Microbiol 12 :527

Chownk M, Sharma A, Singh K, Kaur J (2017)
Future Microbiol 12 :527