A single polypeptide chain may provide an astronomical number of conformers. Nature selected only a trivial number of them through evolution, composing an alphabet of scaffolds, that can afford the complete set of chemical reactions needed to support life. These structural templates are so stable that they allow several mutations without disruption of the global folding, even having the ability to bind several exogenous cofactors. With this perspective, metal cofactors play a crucial role in the regulation and catalysis of several processes. Nature is able to modulate the chemistry of metals, adopting only a few ligands and slightly different geometries. Several scaffolds and metal-binding motifs are representing the focus of intense intere...
De novo proteins provide a unique opportunity for investigating the structure-function relationships...
Diiron proteins represent a diverse class of structures involved in the binding and activation of ox...
De novo design of proteins provides an attractive approach to uncover the essential features require...
A single polypeptide chain may provide an astronomical number of conformers. Nature selected only a ...
De novo protein design represents an attractive approach for testing and extending our understanding...
A major objective in protein science is the design of enzymes with novel catalytic activities that a...
Diiron proteins are found throughout nature and have a diverse range of functions; proteins in this ...
Peptide-based models have an enormous impact for the development of metalloprotein models, as they s...
De novo protein design provides an attractive approach to critically test the features that are requ...
De novo design has proven a powerful methodology for understanding protein folding and function, an...
De novo protein design provides an attractive approach for the construction of models to probe the f...
De novo protein design provides an attractive approach for the construction of models to probe the f...
De novo proteins provide a unique opportunity for investigating the structure-function relationships...
Diiron proteins represent a diverse class of structures involved in the binding and activation of ox...
De novo design of proteins provides an attractive approach to uncover the essential features require...
A single polypeptide chain may provide an astronomical number of conformers. Nature selected only a ...
De novo protein design represents an attractive approach for testing and extending our understanding...
A major objective in protein science is the design of enzymes with novel catalytic activities that a...
Diiron proteins are found throughout nature and have a diverse range of functions; proteins in this ...
Peptide-based models have an enormous impact for the development of metalloprotein models, as they s...
De novo protein design provides an attractive approach to critically test the features that are requ...
De novo design has proven a powerful methodology for understanding protein folding and function, an...
De novo protein design provides an attractive approach for the construction of models to probe the f...
De novo protein design provides an attractive approach for the construction of models to probe the f...
De novo proteins provide a unique opportunity for investigating the structure-function relationships...
Diiron proteins represent a diverse class of structures involved in the binding and activation of ox...
De novo design of proteins provides an attractive approach to uncover the essential features require...