AbstractStaphylokinase (SAK) forms an inactive 1:1 complex with plasminogen (PG), which requires both the conversion of PG to plasmin (Pm) to expose an active site in PG–SAK activator complex and the amino-terminal processing of SAK to expose the positively charged (Lys-11) amino-terminus after removal of the 10 N-terminal amino acid residues from the full length protein. The mechanism by which the N-terminal segment of SAK affects its PG activation capability was investigated by generating SAK mutants, blocked in the native amino-terminal processing site of SAK, and carrying an alteration in the placement of the positively charged amino acid residue, Lys-11, and further studying their interaction with PG, Pm, miniplasmin and kringle struct...
The bacterial protein streptokinase (SK) contains three independently folded domains (α, β and γ), i...
<p>Streptokinase (SK), a plasminogen activator (PA) that converts inactive plasminogen (Pg) to plasm...
With the goal of identifying hitherto unknown surface exosites of streptokinase involved in substrat...
AbstractStaphylokinase (SAK) forms an inactive 1:1 complex with plasminogen (PG), which requires bot...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with plasmin (Pm) and changes its su...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with human plasmin (Pm) and switches...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with plasmin (Pm) and changes its su...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with human plasmin (Pm) and switches...
AbstractPresence of isolated β or βγ domains of streptokinase (SK) increased the catalytic activity ...
Staphylokinsae (SAK) forms a bimolecular complex with human plasmin(ogen) and changes its substrate ...
AbstractPresence of isolated β or βγ domains of streptokinase (SK) increased the catalytic activity ...
A pure complex of staphylokinase and plasmin was prepared by affinity chromatography with lysine-Sep...
PEGylation can improve the therapeutic efficacy of proteins by increasing serum half-life of protein...
The role of a prominent surface-exposed loop (residues 88-97) in the α domain of streptokinase (SK),...
The bacterial protein streptokinase (SK) contains three independently folded domains (α, β and γ), i...
The bacterial protein streptokinase (SK) contains three independently folded domains (α, β and γ), i...
<p>Streptokinase (SK), a plasminogen activator (PA) that converts inactive plasminogen (Pg) to plasm...
With the goal of identifying hitherto unknown surface exosites of streptokinase involved in substrat...
AbstractStaphylokinase (SAK) forms an inactive 1:1 complex with plasminogen (PG), which requires bot...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with plasmin (Pm) and changes its su...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with human plasmin (Pm) and switches...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with plasmin (Pm) and changes its su...
AbstractStaphylokinase (SAK) forms a 1:1 stoichiometric complex with human plasmin (Pm) and switches...
AbstractPresence of isolated β or βγ domains of streptokinase (SK) increased the catalytic activity ...
Staphylokinsae (SAK) forms a bimolecular complex with human plasmin(ogen) and changes its substrate ...
AbstractPresence of isolated β or βγ domains of streptokinase (SK) increased the catalytic activity ...
A pure complex of staphylokinase and plasmin was prepared by affinity chromatography with lysine-Sep...
PEGylation can improve the therapeutic efficacy of proteins by increasing serum half-life of protein...
The role of a prominent surface-exposed loop (residues 88-97) in the α domain of streptokinase (SK),...
The bacterial protein streptokinase (SK) contains three independently folded domains (α, β and γ), i...
The bacterial protein streptokinase (SK) contains three independently folded domains (α, β and γ), i...
<p>Streptokinase (SK), a plasminogen activator (PA) that converts inactive plasminogen (Pg) to plasm...
With the goal of identifying hitherto unknown surface exosites of streptokinase involved in substrat...