SummaryMany proteins require bound metals to achieve their function. We take advantage of increasing structural data on metal-binding proteins to elucidate three properties: the involvement of metal-binding sites in the global dynamics of the protein, predicted by elastic network models, their exposure/burial to solvent, and their signal-processing properties indicated by Markovian stochastics analysis. Systematic analysis of a data set of 145 structures reveals that the residues that coordinate metal ions enjoy remarkably efficient and precise signal transduction properties. These properties are rationalized in terms of their physical properties: participation in hinge sites that control the softest modes collectively accessible to the pro...
Over one third of biomolecules rely on metal ions to exert their cellular functions. Metal ions can ...
ABSTRACT: A semi-automated, rational design strategy has been used to introduce a family of seven si...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
SummaryMany proteins require bound metals to achieve their function. We take advantage of increasing...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
National Natural Science Foundation of China [10774126, 20923004]; Ministry of Science and Technolog...
The geometry of metal coordination by proteins is well understood, but the evolution of metal bindin...
<p>About one-third of the existing proteins require metal ions as cofactors for their catalytic acti...
Metal ions play a functional role in numerous biochemical processes and cellular pathways. Indeed, a...
Metal ions, known as a major ligand of proteins, often play a crucial role in the structure and func...
Volume 9, Issue 1, 1 March 2019, Article number 8© 2019 by the authors. Licensee MDPI, Basel, Switze...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
This book chapter discusses the main properties of metal ions in proteins. First, it describes the a...
In this review, we summarise the most recent findings on some very effective binding sites (e.g. ATC...
With more than a third of the genome encoding for metal-containing biomolecules, the in silico predi...
Over one third of biomolecules rely on metal ions to exert their cellular functions. Metal ions can ...
ABSTRACT: A semi-automated, rational design strategy has been used to introduce a family of seven si...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...
SummaryMany proteins require bound metals to achieve their function. We take advantage of increasing...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
National Natural Science Foundation of China [10774126, 20923004]; Ministry of Science and Technolog...
The geometry of metal coordination by proteins is well understood, but the evolution of metal bindin...
<p>About one-third of the existing proteins require metal ions as cofactors for their catalytic acti...
Metal ions play a functional role in numerous biochemical processes and cellular pathways. Indeed, a...
Metal ions, known as a major ligand of proteins, often play a crucial role in the structure and func...
Volume 9, Issue 1, 1 March 2019, Article number 8© 2019 by the authors. Licensee MDPI, Basel, Switze...
Prediction of binding sites from sequence can significantly help toward determining the function of ...
This book chapter discusses the main properties of metal ions in proteins. First, it describes the a...
In this review, we summarise the most recent findings on some very effective binding sites (e.g. ATC...
With more than a third of the genome encoding for metal-containing biomolecules, the in silico predi...
Over one third of biomolecules rely on metal ions to exert their cellular functions. Metal ions can ...
ABSTRACT: A semi-automated, rational design strategy has been used to introduce a family of seven si...
The field of protein design strives to engineer new molecules that interact in a specific, controlle...