Selective metal coordination is central to the functions of metalloproteins:1,2 each metalloprotein must pair with its cognate metallocofactor to fulfil its biological role3. However, achieving metal selectivity solely through a three-dimensional protein structure is a great challenge, because there is a limited set of metal-coordinating amino acid functionalities and proteins are inherently flexible, which impedes steric selection of metals3,4. Metal-binding affinities of natural proteins are primarily dictated by the electronic properties of metal ions and follow the Irving-Williams series5 (Mn2+ < Fe2+ < Co2+ < Ni2+ < Cu2+ > Zn2+) with few exceptions6,7. Accordingly, metalloproteins overwhelmingly bind Cu2+ and Zn2+ in iso...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
The metal-binding preferences of most metalloproteins do not match their metal-requirements. Thus, m...
BackgroundSpecific interactions of metal ions with proteins are central to all life processes. The v...
Selective metal binding is a key requirement not only for the functions of natural metalloproteins b...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
ABSTRACT: Genetically encoded unnatural amino acids could facilitate the design of proteins and enzy...
<p>About one-third of the existing proteins require metal ions as cofactors for their catalytic acti...
The de novo design of protein-protein interactions (PPIs) has proven to be an immense challenge due ...
Computationally designing protein–protein interactions with high affinity and desired orientation is...
[[abstract]]To elucidate the factors governing metal cation selectivity by proteins, density functio...
Approximately one third of proteins are thought to bind metal ions. These ions often improve the pro...
Metalation, the acquisition of metals by proteins, must avoid mis-metalation with tighter binding me...
Metalloprotein properties result from the interplay between coordination requirements of the metal c...
The metal-binding preferences of most metalloproteins do not match their metal-requirements. Thus, m...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
The metal-binding preferences of most metalloproteins do not match their metal-requirements. Thus, m...
BackgroundSpecific interactions of metal ions with proteins are central to all life processes. The v...
Selective metal binding is a key requirement not only for the functions of natural metalloproteins b...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
ABSTRACT: Genetically encoded unnatural amino acids could facilitate the design of proteins and enzy...
<p>About one-third of the existing proteins require metal ions as cofactors for their catalytic acti...
The de novo design of protein-protein interactions (PPIs) has proven to be an immense challenge due ...
Computationally designing protein–protein interactions with high affinity and desired orientation is...
[[abstract]]To elucidate the factors governing metal cation selectivity by proteins, density functio...
Approximately one third of proteins are thought to bind metal ions. These ions often improve the pro...
Metalation, the acquisition of metals by proteins, must avoid mis-metalation with tighter binding me...
Metalloprotein properties result from the interplay between coordination requirements of the metal c...
The metal-binding preferences of most metalloproteins do not match their metal-requirements. Thus, m...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
The metal-binding preferences of most metalloproteins do not match their metal-requirements. Thus, m...
BackgroundSpecific interactions of metal ions with proteins are central to all life processes. The v...