Trypsin is a long-known serine protease widely used in biochemical, analytical, biotechnological, or biocatalytic applications. The high biotechnological potential is based on its high catalytic activity, substrate specificity, and catalytic robustness in non-physiological reaction conditions. The latter is mainly due to its stable protein fold, to which six intramolecular disulfide bridges make a significant contribution. Although trypsin does not depend on cofactors, it essentially requires the binding of calcium ions to its calcium-binding site to obtain complete enzymatic activity and stability. This behavior is inevitably associated with a limitation of the enzyme’s applicability. To make trypsin intrinsically calcium-independent, we r...
Thermal stability of the thermolysin-like protease produced by Bacillus stearothermophilus (TLP-ste)...
The periplasm provides a strongly oxidizing environment; however, periplasmic expression of proteins...
Structural comparison of wild-type F1 protease and thermophilic homologues leads to hypothesis about...
Artículo de publicación ISIPig trypsin is routinely used as a biotechnological tool, due to its high...
Pig trypsin is routinely used as a biotechnological tool, due to its high specificity and ability to...
An efficient protease therapeutic must be more resistant to naturally occurring inhibitors\ud compar...
<div><p>Pig trypsin is routinely used as a biotechnological tool, due to its high specificity and ab...
Molecular design of trypsin mutants towards higher substrate specificity for arginine or lysine type...
ABSTRACT: Histidine 57 of the catalytic triad of trypsin was replaced with alanine to determine whet...
Mg/Al Layered Double Hydroxides (LDHs) were functionalized to immobilize the serine protease, trypsi...
Crystals of bovine trypsinogen inhibited with diisopropylfluorophosphate (DFP) were grown at pH 7 an...
AbstractThermal stability of the thermolysin-like protease produced by Bacillus stearothermophilus (...
ABSTRACT: Much of the catalytic power of trypsin is derived from the unusual buried, charged side ch...
AbstractBackground: Involved or implicated in a wide spectrum of diseases, trypsin-like serine prote...
Over the past four decades, enzymes have become valuable catalysts for industrial and biotechnologic...
Thermal stability of the thermolysin-like protease produced by Bacillus stearothermophilus (TLP-ste)...
The periplasm provides a strongly oxidizing environment; however, periplasmic expression of proteins...
Structural comparison of wild-type F1 protease and thermophilic homologues leads to hypothesis about...
Artículo de publicación ISIPig trypsin is routinely used as a biotechnological tool, due to its high...
Pig trypsin is routinely used as a biotechnological tool, due to its high specificity and ability to...
An efficient protease therapeutic must be more resistant to naturally occurring inhibitors\ud compar...
<div><p>Pig trypsin is routinely used as a biotechnological tool, due to its high specificity and ab...
Molecular design of trypsin mutants towards higher substrate specificity for arginine or lysine type...
ABSTRACT: Histidine 57 of the catalytic triad of trypsin was replaced with alanine to determine whet...
Mg/Al Layered Double Hydroxides (LDHs) were functionalized to immobilize the serine protease, trypsi...
Crystals of bovine trypsinogen inhibited with diisopropylfluorophosphate (DFP) were grown at pH 7 an...
AbstractThermal stability of the thermolysin-like protease produced by Bacillus stearothermophilus (...
ABSTRACT: Much of the catalytic power of trypsin is derived from the unusual buried, charged side ch...
AbstractBackground: Involved or implicated in a wide spectrum of diseases, trypsin-like serine prote...
Over the past four decades, enzymes have become valuable catalysts for industrial and biotechnologic...
Thermal stability of the thermolysin-like protease produced by Bacillus stearothermophilus (TLP-ste)...
The periplasm provides a strongly oxidizing environment; however, periplasmic expression of proteins...
Structural comparison of wild-type F1 protease and thermophilic homologues leads to hypothesis about...