AbstractRecent studies on triosephosphate isomerase (TIM)-barrel enzymes highlight the remarkable versatility of the TIM-barrel scaffold. At least 15 distinct enzyme families use this framework to generate the appropriate active site geometry, always at the C-terminal end of the eight parallel β-strands of the barrel. Sequence and structure comparisons now suggest that many of the TIM-barrel enzymes are evolutionarily related. Common structural properties of TIM-barrel enzymes are discussed
BackgroundThe limited proteolytic cleavage of proteins can result in distinct polypeptides that rema...
The ability to construct novel enzymes is a major aim in de novo protein design. A popular enzyme fo...
Despite efforts for over 25 years, de novo protein design has not succeeded in achieving the TIM-bar...
The triosephosphate isomerase (TIM) barrel protein fold is a structurally repetitive architecture th...
Abstract The triosephosphate isomerase (TIM) barrel superfamily is a broad family of proteins, most ...
Abstract Enzymes are potentially superior as catalysts for many industrial chemical processes becau...
Natural evolution has yielded countless enzymes of the (β/α)8 barrel fold (TIM barrel). This versati...
The conservation of the intrinsic dynamics of proteins emerges as we attempt to understand the relat...
AbstractThe high representation of the TIM barrel as a scaffold for enzymatic proteins makes it an i...
lationship), superfamilies (probable common evolution-ary origin) and folds (Murzin et al., 1995). P...
AbstractFold recognition results allocate catalytic triose phosphate isomerase (TIM) barrels to seve...
TIM barrel enzymes perform five out of six Enzyme Commission (EC) reaction classes, and are therefor...
Triosephosphate isomerase (TIM) is an enzyme of the glycolytic pathway which catalyses the interconv...
Despite efforts for over 25 years, de novo protein design has not succeeded in achieving the TIM-bar...
Triosephosphate isomerase (TIM), a central enzyme in the glycolytic pathway, has been the subject of...
BackgroundThe limited proteolytic cleavage of proteins can result in distinct polypeptides that rema...
The ability to construct novel enzymes is a major aim in de novo protein design. A popular enzyme fo...
Despite efforts for over 25 years, de novo protein design has not succeeded in achieving the TIM-bar...
The triosephosphate isomerase (TIM) barrel protein fold is a structurally repetitive architecture th...
Abstract The triosephosphate isomerase (TIM) barrel superfamily is a broad family of proteins, most ...
Abstract Enzymes are potentially superior as catalysts for many industrial chemical processes becau...
Natural evolution has yielded countless enzymes of the (β/α)8 barrel fold (TIM barrel). This versati...
The conservation of the intrinsic dynamics of proteins emerges as we attempt to understand the relat...
AbstractThe high representation of the TIM barrel as a scaffold for enzymatic proteins makes it an i...
lationship), superfamilies (probable common evolution-ary origin) and folds (Murzin et al., 1995). P...
AbstractFold recognition results allocate catalytic triose phosphate isomerase (TIM) barrels to seve...
TIM barrel enzymes perform five out of six Enzyme Commission (EC) reaction classes, and are therefor...
Triosephosphate isomerase (TIM) is an enzyme of the glycolytic pathway which catalyses the interconv...
Despite efforts for over 25 years, de novo protein design has not succeeded in achieving the TIM-bar...
Triosephosphate isomerase (TIM), a central enzyme in the glycolytic pathway, has been the subject of...
BackgroundThe limited proteolytic cleavage of proteins can result in distinct polypeptides that rema...
The ability to construct novel enzymes is a major aim in de novo protein design. A popular enzyme fo...
Despite efforts for over 25 years, de novo protein design has not succeeded in achieving the TIM-bar...