Methionine can be used as the sole sulfur source by the Mycobacterium tuberculosis complex although it is not obvious from examination of the genome annotation how these bacteria utilize methionine. Given that genome annotation is a largely predictive process, key challenges are to validate these predictions and to fill in gaps for known functions for which genes have not been annotated. We have addressed these issues by functional analysis of methionine metabolism. Transport, followed by metabolism of 35S methionine into the cysteine adduct mycothiol, demonstrated the conversion of exogenous methionine to cysteine. Mutational analysis and cloning of the Rv1079 gene showed it to encode the key enzyme required for this conversion, cystathion...
The methionine salvage pathway, also called the 5\u27-methylthioadenosine (MTA) cycle, recycles the ...
The catalytic mechanism of MsrA in <i>Mycobacterium tuberculosis</i>, in which <i>S</i>-methionine s...
AbstractA new crystal structure of the dimeric cysteine synthase CysM from Mycobacterium tuberculosi...
Mycobacteria include serious pathogens of humans and animals. Mycolicibacterium smegmatis is a non-p...
Despite the availability of genome data and recent advances in methionine regulation in Corynebacter...
Sulphur is essential for some of the most vital biological activities such as translation initiation...
The oxidation of Met to methionine sulfoxide (MetSO) by oxidants such as hydrogen peroxide, hypochlo...
Bacterial methionine biosynthesis can take place by either the trans-sulfurylation route or direct s...
Introduction: Sulfur is a key component of many cellular compounds. Sulfur uptake by bacteria is typ...
Introduction: Sulfur is a key component of many cellular compounds. Sulfur uptake by bacteria is typ...
Tuberculosis, especially multidrug resistant cases, remains an enormous public health threat. Mycoba...
Macromolecular crystallography allows for the determination of structures to an atomic resolution an...
Rückert C, Pühler A, Kalinowski J. Genome-wide analysis of the L-methionine biosynthetic pathway in ...
Intrinsic drug resistance in bacteria predates the clinical use of antibiotics. Additionally, hetero...
The methionine salvage pathway, also called the 5'-methylthioadenosine (MTA) cycle, recycles the sul...
The methionine salvage pathway, also called the 5\u27-methylthioadenosine (MTA) cycle, recycles the ...
The catalytic mechanism of MsrA in <i>Mycobacterium tuberculosis</i>, in which <i>S</i>-methionine s...
AbstractA new crystal structure of the dimeric cysteine synthase CysM from Mycobacterium tuberculosi...
Mycobacteria include serious pathogens of humans and animals. Mycolicibacterium smegmatis is a non-p...
Despite the availability of genome data and recent advances in methionine regulation in Corynebacter...
Sulphur is essential for some of the most vital biological activities such as translation initiation...
The oxidation of Met to methionine sulfoxide (MetSO) by oxidants such as hydrogen peroxide, hypochlo...
Bacterial methionine biosynthesis can take place by either the trans-sulfurylation route or direct s...
Introduction: Sulfur is a key component of many cellular compounds. Sulfur uptake by bacteria is typ...
Introduction: Sulfur is a key component of many cellular compounds. Sulfur uptake by bacteria is typ...
Tuberculosis, especially multidrug resistant cases, remains an enormous public health threat. Mycoba...
Macromolecular crystallography allows for the determination of structures to an atomic resolution an...
Rückert C, Pühler A, Kalinowski J. Genome-wide analysis of the L-methionine biosynthetic pathway in ...
Intrinsic drug resistance in bacteria predates the clinical use of antibiotics. Additionally, hetero...
The methionine salvage pathway, also called the 5'-methylthioadenosine (MTA) cycle, recycles the sul...
The methionine salvage pathway, also called the 5\u27-methylthioadenosine (MTA) cycle, recycles the ...
The catalytic mechanism of MsrA in <i>Mycobacterium tuberculosis</i>, in which <i>S</i>-methionine s...
AbstractA new crystal structure of the dimeric cysteine synthase CysM from Mycobacterium tuberculosi...