Enzymes play a critical role in a wide array of industrial, medical, and research applications and with the recent explosion of genomic sequencing, we now have sequences for millions of enzymes for which there is no known structure. In order to utilize modern computational design tools for constructing inhibitors or engineering novel catalysts, the ability to accurately model enzymes is critical. A popular approach for modeling enzymes are comparative modeling techniques which can often accurately predict the global structural features. However, achieving atomic accuracy of an active site remains a challenge and is an issue when trying to utilize the molecular details for designing inhibitors or enhanced catalysts. Here we explore integrati...
Background The central element of each enzyme is the catalytic site, which commonly catalyzes a sing...
Background The central element of each enzyme is the catalytic site, which commonly catalyzes a sing...
Background: A common assumption about enzyme active sites is that their structures are highly conser...
Enzymes play a critical role in a wide array of industrial, medical, and research applications and w...
Adding CG constraints to apo models A-1 Catalytic Residues A-2 Active Site Residues (8Å), A-3 All Re...
Structural informatics of conservation of inter-catalytic residue atom distances A- The RMSD of each...
Accurate prediction and modeling of an enzyme's active site are critical for engineering efforts as ...
Enzymes catalyse a huge variety of biochemical reactions, and often the same function might evolve i...
The engineering of catalytic function or substrate specificity in enzymes has been an interesting fi...
Enzymes play a crucial role in modern biotechnology, industry, food processing and medical applicati...
Predicting the location of the active site, and the identity of the catalytic residues, is an import...
The process of deducing the catalytic mechanism of an enzyme from its structure is highly complex an...
Background: A common assumption about enzyme active sites is that their structures are highly conser...
Motivation: The identification of catalytic residues is a key step in understanding the function of ...
Here we examine the reliability of surface comparisons in searches for active sites in proteins. Det...
Background The central element of each enzyme is the catalytic site, which commonly catalyzes a sing...
Background The central element of each enzyme is the catalytic site, which commonly catalyzes a sing...
Background: A common assumption about enzyme active sites is that their structures are highly conser...
Enzymes play a critical role in a wide array of industrial, medical, and research applications and w...
Adding CG constraints to apo models A-1 Catalytic Residues A-2 Active Site Residues (8Å), A-3 All Re...
Structural informatics of conservation of inter-catalytic residue atom distances A- The RMSD of each...
Accurate prediction and modeling of an enzyme's active site are critical for engineering efforts as ...
Enzymes catalyse a huge variety of biochemical reactions, and often the same function might evolve i...
The engineering of catalytic function or substrate specificity in enzymes has been an interesting fi...
Enzymes play a crucial role in modern biotechnology, industry, food processing and medical applicati...
Predicting the location of the active site, and the identity of the catalytic residues, is an import...
The process of deducing the catalytic mechanism of an enzyme from its structure is highly complex an...
Background: A common assumption about enzyme active sites is that their structures are highly conser...
Motivation: The identification of catalytic residues is a key step in understanding the function of ...
Here we examine the reliability of surface comparisons in searches for active sites in proteins. Det...
Background The central element of each enzyme is the catalytic site, which commonly catalyzes a sing...
Background The central element of each enzyme is the catalytic site, which commonly catalyzes a sing...
Background: A common assumption about enzyme active sites is that their structures are highly conser...