De novo protein design provides an attractive approach for the construction of models to probe the features required for the function of complex metalloproteins. These minimal models contain the essential elements believed necessary for activity of the protein. In this article, we summarize the design, structure determination, and functional properties of a family of artificial diiron proteins
Peptide-based models have an enormous impact for the development of metalloprotein models, as they s...
De novo protein design has recently emerged as an attractive approach for studying the structure and...
De novo proteins provide a unique opportunity to investigate the structure-function relationships of...
De novo protein design provides an attractive approach for the construction of models to probe the f...
A major objective in protein science is the design of enzymes with novel catalytic activities that a...
A single polypeptide chain may provide an astronomical number of conformers. Nature selected only a ...
De novo protein design provides an attractive approach to critically test the features that are requ...
Diiron proteins are found throughout nature and have a diverse range of functions; proteins in this ...
Diiron proteins represent a diverse class of structures involved in the binding and activation of ox...
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 protein design represents an attractive approach for testing and extending our understanding...
The de novo design of artificial metalloproteins from first-principles is a powerful strategy with w...
Peptide-based models have an enormous impact for the development of metalloprotein models, as they s...
De novo protein design has recently emerged as an attractive approach for studying the structure and...
De novo proteins provide a unique opportunity to investigate the structure-function relationships of...
De novo protein design provides an attractive approach for the construction of models to probe the f...
A major objective in protein science is the design of enzymes with novel catalytic activities that a...
A single polypeptide chain may provide an astronomical number of conformers. Nature selected only a ...
De novo protein design provides an attractive approach to critically test the features that are requ...
Diiron proteins are found throughout nature and have a diverse range of functions; proteins in this ...
Diiron proteins represent a diverse class of structures involved in the binding and activation of ox...
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 protein design represents an attractive approach for testing and extending our understanding...
The de novo design of artificial metalloproteins from first-principles is a powerful strategy with w...
Peptide-based models have an enormous impact for the development of metalloprotein models, as they s...
De novo protein design has recently emerged as an attractive approach for studying the structure and...
De novo proteins provide a unique opportunity to investigate the structure-function relationships of...