Relaxases are metal-dependent nucleases that break and join DNA for the initiation and completion of conjugative bacterial gene transfer. Conjugation is the main process through which antibiotic resistance spreads among bacteria, with multidrug-resistant staphylococci and streptococci infections posing major threats to human health. The MOBV family of relaxases accounts for approximately 85% of all relaxases found in Staphylococcus aureus isolates. Here, we present six structures of the MOBV relaxase MobM from the promiscuous plasmid pMV158 in complex with several origin of transfer DNA fragments. A combined structural, biochemical, and computational approach reveals that MobM follows a previously uncharacterized histidine/metal-dependent D...
This work was supported by Wellcome Trust grant 098302 to G.W., a Royal Society Dorothy Hodgkin fell...
Horizontal gene transfer via plasmid conjugation enables antimicrobial resistance (AMR) to spread am...
<p>The MOB<sub>V1</sub> family of relaxases is broadly distributed in plasmids and other mobile gene...
Relaxases are metal-dependent nucleases that break and join DNA for the initiation and completion of...
MobM relaxase from the promiscuous antibiotic resistance plasmid pMV158 is a prototype of the Mob_Pr...
Bacteria expand their genetic diversity, spread antibiotic resistance genes, and obtain virulence fa...
The MOBV1 family of relaxases is broadly distributed in plasmids and other mobile genetic elements i...
AbstractConjugative plasmid transfer between bacteria disseminates antibiotic resistance and diversi...
201 p.-51 fig.-14 tab.Conjugation is the most important mechanism involved in horizontal genetic tra...
Conjugative plasmid transfer results in the spread of antibiotic resistance genes and virulence fact...
Background[br/] Conjugative spread of antibiotic resistance and virulence genes in bacteria constitu...
Relaxases play essential roles in conjugation, the main process by which bacteria exchange genetic m...
ABSTRACT Antimicrobial resistance in Staphylococcus aureus presents an increasing threat to human he...
AbstractConjugative plasmid transfer results in the spread of antibiotic resistance genes and virule...
Antimicrobial resistance in Staphylococcus aureus presents an increasing threat to human health. Thi...
This work was supported by Wellcome Trust grant 098302 to G.W., a Royal Society Dorothy Hodgkin fell...
Horizontal gene transfer via plasmid conjugation enables antimicrobial resistance (AMR) to spread am...
<p>The MOB<sub>V1</sub> family of relaxases is broadly distributed in plasmids and other mobile gene...
Relaxases are metal-dependent nucleases that break and join DNA for the initiation and completion of...
MobM relaxase from the promiscuous antibiotic resistance plasmid pMV158 is a prototype of the Mob_Pr...
Bacteria expand their genetic diversity, spread antibiotic resistance genes, and obtain virulence fa...
The MOBV1 family of relaxases is broadly distributed in plasmids and other mobile genetic elements i...
AbstractConjugative plasmid transfer between bacteria disseminates antibiotic resistance and diversi...
201 p.-51 fig.-14 tab.Conjugation is the most important mechanism involved in horizontal genetic tra...
Conjugative plasmid transfer results in the spread of antibiotic resistance genes and virulence fact...
Background[br/] Conjugative spread of antibiotic resistance and virulence genes in bacteria constitu...
Relaxases play essential roles in conjugation, the main process by which bacteria exchange genetic m...
ABSTRACT Antimicrobial resistance in Staphylococcus aureus presents an increasing threat to human he...
AbstractConjugative plasmid transfer results in the spread of antibiotic resistance genes and virule...
Antimicrobial resistance in Staphylococcus aureus presents an increasing threat to human health. Thi...
This work was supported by Wellcome Trust grant 098302 to G.W., a Royal Society Dorothy Hodgkin fell...
Horizontal gene transfer via plasmid conjugation enables antimicrobial resistance (AMR) to spread am...
<p>The MOB<sub>V1</sub> family of relaxases is broadly distributed in plasmids and other mobile gene...