AbstractWe express the effective Hamiltonian of an ion-binding site in a protein as a combination of the Hamiltonian of the ion-bound site in vacuum and the restraints of the protein on the site. The protein restraints are described by the quadratic elastic network model. The Hamiltonian of the ion-bound site in vacuum is approximated as a generalized Hessian around the minimum energy configuration. The resultant of the two quadratic Hamiltonians is cast into a pure quadratic form. In the canonical ensemble, the quadratic nature of the resultant Hamiltonian allows us to express analytically the excess free energy, enthalpy, and entropy of ion binding to the protein. The analytical expressions allow us to separate the roles of the dynamic re...
Metals are the most commonly encountered protein cofactors, and they play important structural and f...
[[abstract]]To elucidate the most preferable, ground-state coordination geometry for zinc complexes ...
The binding of metal ions at the interface of protein complexes presents a unique and poorly unders...
AbstractWe express the effective Hamiltonian of an ion-binding site in a protein as a combination of...
Interactions between inorganic metal-ion cofactors and organic protein scaffolds are important for t...
Zinc finger transcription factors are the largest class of metalloproteins in the human genome. Bind...
[[abstract]]To elucidate the factors governing metal cation selectivity by proteins, density functio...
Zinc fingers are Zn2+-bound peptide motifs that bind DNA specifically and have great potential in ge...
Approximately one third of proteins are thought to bind metal ions. These ions often improve the pro...
Structure-based protein design tests our understanding of the minimal determinants of protein struct...
International audienceZinc fingers are ubiquitous small protein domains which have a Zn(Cys)(4-x)(Hi...
Classical zinc fingers domains (ZFs) bind Zn(II) ion by a pair of cysteine and histidine residues to...
Selective metal coordination is central to the functions of metalloproteins:1,2 each metalloprotein ...
The binding of zinc (Zn) ions to proteins is important for many cellular events. The theoretical and...
Engineered proteins will continue to expand the molecular toolkit for applications in medicine, biot...
Metals are the most commonly encountered protein cofactors, and they play important structural and f...
[[abstract]]To elucidate the most preferable, ground-state coordination geometry for zinc complexes ...
The binding of metal ions at the interface of protein complexes presents a unique and poorly unders...
AbstractWe express the effective Hamiltonian of an ion-binding site in a protein as a combination of...
Interactions between inorganic metal-ion cofactors and organic protein scaffolds are important for t...
Zinc finger transcription factors are the largest class of metalloproteins in the human genome. Bind...
[[abstract]]To elucidate the factors governing metal cation selectivity by proteins, density functio...
Zinc fingers are Zn2+-bound peptide motifs that bind DNA specifically and have great potential in ge...
Approximately one third of proteins are thought to bind metal ions. These ions often improve the pro...
Structure-based protein design tests our understanding of the minimal determinants of protein struct...
International audienceZinc fingers are ubiquitous small protein domains which have a Zn(Cys)(4-x)(Hi...
Classical zinc fingers domains (ZFs) bind Zn(II) ion by a pair of cysteine and histidine residues to...
Selective metal coordination is central to the functions of metalloproteins:1,2 each metalloprotein ...
The binding of zinc (Zn) ions to proteins is important for many cellular events. The theoretical and...
Engineered proteins will continue to expand the molecular toolkit for applications in medicine, biot...
Metals are the most commonly encountered protein cofactors, and they play important structural and f...
[[abstract]]To elucidate the most preferable, ground-state coordination geometry for zinc complexes ...
The binding of metal ions at the interface of protein complexes presents a unique and poorly unders...