The ability to precisely control protein complex formation has high utility in the expanding field of biomaterials. Driving protein–protein binding through metal–ligand bridging interactions is a promising method of achieving this goal. Furthermore, the capacity to precisely regulate both complex formation and dissociation enables additional control not available with constitutive protein complexes. Here we describe the design of three metal-controlled protein dimers that are completely monomeric in the absence of metal yet form high-affinity symmetric homodimers in the presence of zinc sulfate. The scaffold used for the designed dimers is the β1 domain of streptococcal protein G. In addition to forming high-affinity dimers in the presence ...
Many proteins exist naturally as symmetrical homooligomers or homopolymers1. The emergent structural...
Supramolecules, which are formed by assembling multiple molecules by noncovalent intermolecular inte...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
Computationally designing protein–protein interactions with high affinity and desired orientation is...
Includes bibliographical references (p. 36-37).Protein G is a well-characterized immunoglobulin bind...
Includes bibliographical references (p. 52)Protein-protein interactions play a role in practically e...
The de novo design of protein-protein interactions (PPIs) has proven to be an immense challenge due ...
Selective metal coordination is central to the functions of metalloproteins:1,2 each metalloprotein ...
Selective metal binding is a key requirement not only for the functions of natural metalloproteins b...
Metalloproteins are some of the best catalysts in Nature. The synergistic combination of transition ...
Dimerization of cellular proteins has become an intense field of study due to its importance in sign...
ABSTRACT: A semi-automated, rational design strategy has been used to introduce a family of seven si...
As an approach to both explore the physical/chemical parameters that drive molecular self-assembly a...
Salgado et al. (2009b) report the rational design of protein interfaces based on metal-mediated asso...
Many proteins exist naturally as symmetrical homooligomers or homopolymers1. The emergent structural...
Supramolecules, which are formed by assembling multiple molecules by noncovalent intermolecular inte...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
Computationally designing protein–protein interactions with high affinity and desired orientation is...
Includes bibliographical references (p. 36-37).Protein G is a well-characterized immunoglobulin bind...
Includes bibliographical references (p. 52)Protein-protein interactions play a role in practically e...
The de novo design of protein-protein interactions (PPIs) has proven to be an immense challenge due ...
Selective metal coordination is central to the functions of metalloproteins:1,2 each metalloprotein ...
Selective metal binding is a key requirement not only for the functions of natural metalloproteins b...
Metalloproteins are some of the best catalysts in Nature. The synergistic combination of transition ...
Dimerization of cellular proteins has become an intense field of study due to its importance in sign...
ABSTRACT: A semi-automated, rational design strategy has been used to introduce a family of seven si...
As an approach to both explore the physical/chemical parameters that drive molecular self-assembly a...
Salgado et al. (2009b) report the rational design of protein interfaces based on metal-mediated asso...
Many proteins exist naturally as symmetrical homooligomers or homopolymers1. The emergent structural...
Supramolecules, which are formed by assembling multiple molecules by noncovalent intermolecular inte...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...