Although EcoR124 is one of the better-studied Type I restriction-modification enzymes, it still presents many challenges to detailed analyses because of its structural and functional complexity and missing structural information. In all available structures of its motor subunit HsdR, responsible for DNA translocation and cleavage, a large part of the HsdR C terminus remains unresolved. The crystal structure of the C terminus of HsdR, obtained with a crystallization chaperone in the form of pHluorin fusion and refined to 2.45 , revealed that this part of the protein forms an independent domain with its own hydrophobic core and displays a unique -helical fold. The full-length HsdR model, based on the WT structure and the C-terminal domain det...
EcoR124 and EcoR124/3 are type I DNA restriction and modification systems. The EcoR124/3 system aros...
Type I restriction-modification enzymes are multifunctional heteromeric complexes with DNA cleavage ...
Among four types of bacterial restriction enzymes that cleave a foreign DNA depending on its methyla...
AbstractType I restriction-modification (RM) systems are large, multifunctional enzymes composed of ...
EcoR124I is a Type I restrictionmodification (RM) enzyme and as such forms multifunctional pentameri...
Type I restriction-modification (R-M) enzymes recognize specific sequences on foreign DNA invading t...
Bacterial type I restriction-modification systems are composed of three different subunits: one HsdS...
Type I restriction-modification (RM) systems are comprised of two multi-subunit enzymes, the methylt...
The DNA specificity subunit (HsdS) of type I restriction-modification enzymes is composed of two ind...
The EcoR124INT restriction-modification (R-M) system contains the genes HsdS3, HsdM and HsdR. S3 enc...
The Type I restriction-modification enzyme EcoR124I is an ATP-dependent endonuclease that uses dsDNA...
PLoS ONE. Volume 10, Issue 6, 3 June 2015, Article number e0128700.Type I restriction-modification ...
AbstractThe type I restriction–modification enzyme EcoR124I comprises three subunits with the stoich...
SummaryThe Type I R–M system EcoR124I is encoded by three genes. HsdM is responsible for modificatio...
Type I restriction-modification enzymes are multifunctional heteromeric complexes with DNA cleavage ...
EcoR124 and EcoR124/3 are type I DNA restriction and modification systems. The EcoR124/3 system aros...
Type I restriction-modification enzymes are multifunctional heteromeric complexes with DNA cleavage ...
Among four types of bacterial restriction enzymes that cleave a foreign DNA depending on its methyla...
AbstractType I restriction-modification (RM) systems are large, multifunctional enzymes composed of ...
EcoR124I is a Type I restrictionmodification (RM) enzyme and as such forms multifunctional pentameri...
Type I restriction-modification (R-M) enzymes recognize specific sequences on foreign DNA invading t...
Bacterial type I restriction-modification systems are composed of three different subunits: one HsdS...
Type I restriction-modification (RM) systems are comprised of two multi-subunit enzymes, the methylt...
The DNA specificity subunit (HsdS) of type I restriction-modification enzymes is composed of two ind...
The EcoR124INT restriction-modification (R-M) system contains the genes HsdS3, HsdM and HsdR. S3 enc...
The Type I restriction-modification enzyme EcoR124I is an ATP-dependent endonuclease that uses dsDNA...
PLoS ONE. Volume 10, Issue 6, 3 June 2015, Article number e0128700.Type I restriction-modification ...
AbstractThe type I restriction–modification enzyme EcoR124I comprises three subunits with the stoich...
SummaryThe Type I R–M system EcoR124I is encoded by three genes. HsdM is responsible for modificatio...
Type I restriction-modification enzymes are multifunctional heteromeric complexes with DNA cleavage ...
EcoR124 and EcoR124/3 are type I DNA restriction and modification systems. The EcoR124/3 system aros...
Type I restriction-modification enzymes are multifunctional heteromeric complexes with DNA cleavage ...
Among four types of bacterial restriction enzymes that cleave a foreign DNA depending on its methyla...