Javascript must be enabled to continue!
Molecular characterization of Mycobacterium ulcerans DNA gyrase and identification of mutations reduced susceptibility against quinolones in vitro
View through CrossRef
ABSTRACT
Buruli ulcer disease is a neglected necrotizing and disabling cutaneous tropical illness caused by
Mycobacterium ulcerans
(
Mul
). Fluoroquinolone (FQ), used in the treatment of this disease, has been known to act by inhibiting the enzymatic activities of DNA gyrase; however, the detailed molecular basis of these characteristics and the FQ resistance mechanisms in
Mul
remains unknown. This study investigated the detailed molecular mechanism of
Mul
DNA gyrase and the contribution of FQ resistance
in vitro
using recombinant proteins from the
Mul
subsp. shinshuense and Agy99 strains with reduced sensitivity to FQs. The IC
50
of FQs against Ala91Vla and Asp95Gly mutants of
Mul
shinshuense and Agy99 GyrA subunits were 3.7- to 42.0-fold higher than those against wild-type enzyme. Similarly, the CC
25
was 10- to 210-fold higher than those for the WT enzyme. Furthermore, the interaction between the amino acid residues of WT/mutant
Mul
DNA gyrase and FQ side chains was assessed via molecular docking studies. This is the first detailed study showing the contribution of
Mul
DNA GyrA subunit mutations to reduce the susceptibility against FQs.
Title: Molecular characterization of
Mycobacterium ulcerans
DNA gyrase and identification of mutations reduced susceptibility against quinolones
in vitro
Description:
ABSTRACT
Buruli ulcer disease is a neglected necrotizing and disabling cutaneous tropical illness caused by
Mycobacterium ulcerans
(
Mul
).
Fluoroquinolone (FQ), used in the treatment of this disease, has been known to act by inhibiting the enzymatic activities of DNA gyrase; however, the detailed molecular basis of these characteristics and the FQ resistance mechanisms in
Mul
remains unknown.
This study investigated the detailed molecular mechanism of
Mul
DNA gyrase and the contribution of FQ resistance
in vitro
using recombinant proteins from the
Mul
subsp.
shinshuense and Agy99 strains with reduced sensitivity to FQs.
The IC
50
of FQs against Ala91Vla and Asp95Gly mutants of
Mul
shinshuense and Agy99 GyrA subunits were 3.
7- to 42.
0-fold higher than those against wild-type enzyme.
Similarly, the CC
25
was 10- to 210-fold higher than those for the WT enzyme.
Furthermore, the interaction between the amino acid residues of WT/mutant
Mul
DNA gyrase and FQ side chains was assessed via molecular docking studies.
This is the first detailed study showing the contribution of
Mul
DNA GyrA subunit mutations to reduce the susceptibility against FQs.
Related Results
Hosts and transmission of Mycobacterium ulcerans: a systematic review
Hosts and transmission of Mycobacterium ulcerans: a systematic review
The control of Buruli ulcer (BU), a debilitating neglected tropical disease, is hampered by the inadequate understanding of the mode of transmission of its causative agent, Mycobac...
Experimental pieces of evidence for
Mycobacterium ulcerans
dormancy
Experimental pieces of evidence for
Mycobacterium ulcerans
dormancy
ABSTRACT
Background
Whether
Mycobacterium ulcerans
, the etiologic...
Répertoire des mycobactéries non-tuberculeuses en milieu tropical.
Répertoire des mycobactéries non-tuberculeuses en milieu tropical.
Dans la famille des mycobacteriacea, les mycobactéries non-tuberculeuses (MNT) forment un ensemble distinct du complexe Mycobacterium tuberculosis et du complexe Mycobacterium lepr...
Variable Number Tandem Repeat Profiling of Mycobacterium ulcerans Reveals New Genotypes in Buruli Ulcer Endemic Communities in Ghana and Côte d’Ivoire
Variable Number Tandem Repeat Profiling of Mycobacterium ulcerans Reveals New Genotypes in Buruli Ulcer Endemic Communities in Ghana and Côte d’Ivoire
Buruli ulcer (BU), a necrotic skin disease caused by Mycobacterium ulcerans, is mainly prevalent in West Africa, but cases have also been reported in other tropical parts of the wo...
Screening anti-infectious molecules against
Mycobacterium ulcerans
: a step towards decontaminating environmental specimens
Screening anti-infectious molecules against
Mycobacterium ulcerans
: a step towards decontaminating environmental specimens
Abstract
Mycobacterium ulcerans
, a non-tuberculous mycobacterium responsible for Buruli ulcer, is residing in poorly defined e...
Translocating Mycobacterium ulcerans: An experimental model
Translocating Mycobacterium ulcerans: An experimental model
Mycobacterium ulcerans
is a non-tuberculous environmental mycobacterium responsible for extensive cutaneous and subcutaneous ulcers in mammals, known as Buruli ...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Translocating
Mycobacterium ulcerans
: an experimental model
Translocating
Mycobacterium ulcerans
: an experimental model
ABSTRACT
Mycobacterium ulcerans
is a non-tuberculous environmental mycobacterium responsible for extensive cutaneous and subcut...

