The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic proteinase from Endothia parasitica), with and without bound inhibitors, and human pepsin 3b. Comparison of multiple crystal structures of members of the aspartic proteinase family has revealed small but significant differences in domain orientation in different crystal forms. In this paper, it is shown that these differences in domain orientation do not necessarily correlate with the presence or absence of bound inhibitors, but appear to stem at least partly from crystal contacts mediated by sulfate ions. However, since the same inherent flexibility of the structure is observed for other enzymes in this family such as human pepsin, the native s...
The aspartic proteinases are a family of enzymes involved in a number of important biological proces...
We report the X-ray analysis at 2.0 A resolution for crystals of the aspartic proteinase endothiapep...
One way to combat infectious diseases is to selectively inhibit foreign proteases within host cells,...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The conformation of a synthetic polypeptide inhibitor, bound to the active site of a fungal aspartic...
Endothiapepsin is derived from the fungus Endothia parasitica and is a member of the aspartic protei...
The crystal structures of an aspartic proteinase from Trichoderma reesei (TrAsP) and of its complex ...
ABSTRACT: Current proposals for the catalytic mechanism of aspartic proteinases are largely based on...
The X-ray structures of native endothiapepsin and a complex with a hydroxyethylene transition state ...
AbstractThe active site of the aspartic proteinase, endothiapepsin, has been defined by X-ray analys...
Current proposals for the catalytic mechanism of aspartic proteinases are largely based on X-ray str...
Endothiapepsin is derived from the fungus Endothia parasitica and is a member of the aspartic protei...
The aspartic proteinases are a family of enzymes involved in a number of important biological proces...
We report the X-ray analysis at 2.0 A resolution for crystals of the aspartic proteinase endothiapep...
One way to combat infectious diseases is to selectively inhibit foreign proteases within host cells,...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The analysis reported here describes detailed structural studies of endothiapepsin (the aspartic pro...
The conformation of a synthetic polypeptide inhibitor, bound to the active site of a fungal aspartic...
Endothiapepsin is derived from the fungus Endothia parasitica and is a member of the aspartic protei...
The crystal structures of an aspartic proteinase from Trichoderma reesei (TrAsP) and of its complex ...
ABSTRACT: Current proposals for the catalytic mechanism of aspartic proteinases are largely based on...
The X-ray structures of native endothiapepsin and a complex with a hydroxyethylene transition state ...
AbstractThe active site of the aspartic proteinase, endothiapepsin, has been defined by X-ray analys...
Current proposals for the catalytic mechanism of aspartic proteinases are largely based on X-ray str...
Endothiapepsin is derived from the fungus Endothia parasitica and is a member of the aspartic protei...
The aspartic proteinases are a family of enzymes involved in a number of important biological proces...
We report the X-ray analysis at 2.0 A resolution for crystals of the aspartic proteinase endothiapep...
One way to combat infectious diseases is to selectively inhibit foreign proteases within host cells,...