SummaryThe role of internal dynamics in enzyme function is highly debated. Specifically, how small changes in structure far away from the reaction site alter protein dynamics and overall enzyme mechanisms is of wide interest in protein engineering. Using RNase A as a model, we demonstrate that elimination of a single methyl group located >10 Å away from the reaction site significantly alters conformational integrity and binding properties of the enzyme. This A109G mutation does not perturb structure or thermodynamic stability, both in the apo and ligand-bound states. However, significant enhancement in conformational dynamics was observed for the bound variant, as probed over nano- to millisecond timescales, resulting in major ligand reposi...
Relationship between stability and activity of enzymes is maintained by underlying conformational fl...
none5siRate-limiting millisecond motions in wild-type (WT) Ribonuclease A (RNase A) are modulated by...
Conformational flexibility between structural ensembles is an essential component of enzyme function...
SummaryThe role of internal dynamics in enzyme function is highly debated. Specifically, how small c...
Conformational flexibility of the enzyme architecture is essential for biological function. These st...
Conformational flexibility of the enzyme architecture is essential for biological function. These st...
<p>Enzyme catalysis is a complex process involving several steps along the reaction coordinates, inc...
The motion of amino acid residues on the millisecond (ms) time scale is involved in the tight regula...
Enzyme catalysis is a complex process involving several steps along the reaction coordinates, includ...
International audienceUnderstanding the relationship between protein structure and flexibility is of...
The ability to use conformational flexibility is a hallmark of enzyme function. Here we show that pr...
The ability to use conformational flexibility is a hallmark of enzyme function. Here we show that pr...
The ability to use conformational flexibility is a hallmark of enzyme function. Here we show that pr...
<div><p>Relationship between stability and activity of enzymes is maintained by underlying conformat...
The motion of amino acid residues on the millisecond (ms) time scale is involved in the tight regula...
Relationship between stability and activity of enzymes is maintained by underlying conformational fl...
none5siRate-limiting millisecond motions in wild-type (WT) Ribonuclease A (RNase A) are modulated by...
Conformational flexibility between structural ensembles is an essential component of enzyme function...
SummaryThe role of internal dynamics in enzyme function is highly debated. Specifically, how small c...
Conformational flexibility of the enzyme architecture is essential for biological function. These st...
Conformational flexibility of the enzyme architecture is essential for biological function. These st...
<p>Enzyme catalysis is a complex process involving several steps along the reaction coordinates, inc...
The motion of amino acid residues on the millisecond (ms) time scale is involved in the tight regula...
Enzyme catalysis is a complex process involving several steps along the reaction coordinates, includ...
International audienceUnderstanding the relationship between protein structure and flexibility is of...
The ability to use conformational flexibility is a hallmark of enzyme function. Here we show that pr...
The ability to use conformational flexibility is a hallmark of enzyme function. Here we show that pr...
The ability to use conformational flexibility is a hallmark of enzyme function. Here we show that pr...
<div><p>Relationship between stability and activity of enzymes is maintained by underlying conformat...
The motion of amino acid residues on the millisecond (ms) time scale is involved in the tight regula...
Relationship between stability and activity of enzymes is maintained by underlying conformational fl...
none5siRate-limiting millisecond motions in wild-type (WT) Ribonuclease A (RNase A) are modulated by...
Conformational flexibility between structural ensembles is an essential component of enzyme function...