AbstractWe present a model for the three-dimensional structure of the glutamate-specific endopeptidase from Streptomyces griseus based on the crystal structures of other bacterial proteases of the trypsin family. For the first time a structural model is described which attempts to explain the basis of P1 glutamate specificity in serine proteases. Several important changes to the S1 pocket with respect to other members of the family of different specificity are described. Of particular interest is the presence of a histidine at position 213 and the substitution of Arg-138 by lysine. Other biochemical evidence concerning substrate preferences can be rationalized on the basis of the model
AbstractEndopeptidase classification based on catalytic mechanism and evolutionary history has prove...
SummaryThe crystal structures of two homologous endopeptidases from cyanobacteria Anabaena variabili...
AbstractTo investigate the role of Glu196 of leucine aminopeptidase from Streptomyces griseus (SGAP)...
AbstractWe present a model for the three-dimensional structure of the glutamate-specific endopeptida...
AbstractThe amino acid sequence and part of the DNA sequence of a glutamic acid-specific serine prot...
Extended substrate specificity is exhibited by a number of highly evolved members of the SI peptidas...
Glutamyl endopeptidases (GEPases) are chymotrypsin-like enzymes that preferentially cleave the pepti...
A family of engineered endopeptidases has been created that is capable of cleaving a diverse array o...
Abstract Staphylococcus aureus, Staphylococcus epidermidis and Staphylococcus warneri secrete glutam...
AbstractThe aminopeptidase from Streptomyces griseus (SGAP) has been cloned and expressed in Escheri...
Substrate specificity of serine β-lactamases How do enzymes achieve substrate specificity? More spec...
AbstractIn this paper the universal validity of the substrate mimetic concept in enzymatic C-N ligat...
AbstractBackground: Peptide-ligating technologies facilitate a range of manipulations for the study ...
ABSTRACT: Histidine 57 of the catalytic triad of trypsin was replaced with alanine to determine whet...
In the trypsin superfamily of serine proteases, non-trypsin-like primary specificities have arisen i...
AbstractEndopeptidase classification based on catalytic mechanism and evolutionary history has prove...
SummaryThe crystal structures of two homologous endopeptidases from cyanobacteria Anabaena variabili...
AbstractTo investigate the role of Glu196 of leucine aminopeptidase from Streptomyces griseus (SGAP)...
AbstractWe present a model for the three-dimensional structure of the glutamate-specific endopeptida...
AbstractThe amino acid sequence and part of the DNA sequence of a glutamic acid-specific serine prot...
Extended substrate specificity is exhibited by a number of highly evolved members of the SI peptidas...
Glutamyl endopeptidases (GEPases) are chymotrypsin-like enzymes that preferentially cleave the pepti...
A family of engineered endopeptidases has been created that is capable of cleaving a diverse array o...
Abstract Staphylococcus aureus, Staphylococcus epidermidis and Staphylococcus warneri secrete glutam...
AbstractThe aminopeptidase from Streptomyces griseus (SGAP) has been cloned and expressed in Escheri...
Substrate specificity of serine β-lactamases How do enzymes achieve substrate specificity? More spec...
AbstractIn this paper the universal validity of the substrate mimetic concept in enzymatic C-N ligat...
AbstractBackground: Peptide-ligating technologies facilitate a range of manipulations for the study ...
ABSTRACT: Histidine 57 of the catalytic triad of trypsin was replaced with alanine to determine whet...
In the trypsin superfamily of serine proteases, non-trypsin-like primary specificities have arisen i...
AbstractEndopeptidase classification based on catalytic mechanism and evolutionary history has prove...
SummaryThe crystal structures of two homologous endopeptidases from cyanobacteria Anabaena variabili...
AbstractTo investigate the role of Glu196 of leucine aminopeptidase from Streptomyces griseus (SGAP)...