AbstractEnzymes are the proteins responsible for the catalysis of life. Enzymes sharing a common ancestor as defined by sequence and structure similarity are grouped into families and superfamilies. The molecular function of enzymes is defined as their ability to catalyze biochemical reactions; it is manually classified by the Enzyme Commission and robust approaches to quantitatively compare catalytic reactions are just beginning to appear. Here, we present an overview of studies at the interface of the evolution and function of enzymes
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
The study of the evolution of proteins has been traditionally undertaken from a sequence and structu...
AbstractEnzymes are the proteins responsible for the catalysis of life. Enzymes sharing a common anc...
<div><p>In order to understand the evolution of enzyme reactions and to gain an overview of biologic...
Studying the evolution of enzymes and their functions improves our ability to determine the function...
AbstractEnzymes, as biological catalysts, form the basis of all forms of life. How these proteins ha...
In order to understand the evolution of enzyme reactions and to gain an overview of biological catal...
Enzymes, as biological catalysts, form the basis of all forms of life. How these proteins have evolv...
The goal of our research is to increase our understanding of how biology works at the molecular leve...
AbstractEnzymes, as biological catalysts, form the basis of all forms of life. How these proteins ha...
Computational representation of enzyme function should include the structural elements of enzymes wh...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
The study of the evolution of proteins has been traditionally undertaken from a sequence and structu...
AbstractEnzymes are the proteins responsible for the catalysis of life. Enzymes sharing a common anc...
<div><p>In order to understand the evolution of enzyme reactions and to gain an overview of biologic...
Studying the evolution of enzymes and their functions improves our ability to determine the function...
AbstractEnzymes, as biological catalysts, form the basis of all forms of life. How these proteins ha...
In order to understand the evolution of enzyme reactions and to gain an overview of biological catal...
Enzymes, as biological catalysts, form the basis of all forms of life. How these proteins have evolv...
The goal of our research is to increase our understanding of how biology works at the molecular leve...
AbstractEnzymes, as biological catalysts, form the basis of all forms of life. How these proteins ha...
Computational representation of enzyme function should include the structural elements of enzymes wh...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, ...
The study of the evolution of proteins has been traditionally undertaken from a sequence and structu...