Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and its natural function is to hydrolyze choline-O-sulfate into choline and sulfate. Despite its natural function, the major interest in this enzyme resides in the landmark catalytic/substrate promiscuity of sulfatases, which has led to attention in the biotechnological field due to their potential in protein engineering. In this work, an in-depth structural analysis of wild-type Sinorhizobium (Ensifer) meliloti COSe (SmeCOSe) and its C54S active-site mutant is reported. The binding mode of this AP superfamily member to both products of the reaction (sulfate and choline) and to a substrate-like compound are shown for the first time. The structur...
AbstractBackground: Sulfatases catalyze the hydrolysis of sulfuric acid esters from a wide variety o...
AbstractBackground: Sulfatases catalyze the hydrolysis of sulfuric acid esters from a wide variety o...
Waldow A, Schmidt B, Dierks T, Bulow von R, Figura von K. Amino acid residues forming the active sit...
Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and...
Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and...
Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and...
This work was supported by the Spanish Ministry of Science and Innovation/FEDER grants PID2020-11626...
14 pags., 8 figs., 1 tab.Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphat...
Hydrolysis of organic sulfate esters proceeds by two distinct mechanisms, water attacking at either ...
Hydrolysis of organic sulfate esters proceeds by two distinct mechanisms, water attacking at either ...
Boltes I, Czapinska H, Kahnert A, et al. 1.3 angstrom structure of arylsulfatase from Pseudomonas ae...
AbstractBackground: Sulfatases constitute a family of enzymes with a highly conserved active site re...
Bulow von R, Schmidt B, Dierks T, Figura von K, Uson I. Crystal structure of an enzyme-substrate com...
Pseudomonas aeruginosa arylsulfatase (PAS) hydrolyzes sulfate and, promiscuously, phosphate monoeste...
AbstractMammalian sulfotransferases (STs) utilize exclusively the sulfuryl group donor 3′-phosphoade...
AbstractBackground: Sulfatases catalyze the hydrolysis of sulfuric acid esters from a wide variety o...
AbstractBackground: Sulfatases catalyze the hydrolysis of sulfuric acid esters from a wide variety o...
Waldow A, Schmidt B, Dierks T, Bulow von R, Figura von K. Amino acid residues forming the active sit...
Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and...
Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and...
Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphatase (AP) superfamily, and...
This work was supported by the Spanish Ministry of Science and Innovation/FEDER grants PID2020-11626...
14 pags., 8 figs., 1 tab.Choline-O-sulfatase (COSe; EC 3.1.6.6) is a member of the alkaline phosphat...
Hydrolysis of organic sulfate esters proceeds by two distinct mechanisms, water attacking at either ...
Hydrolysis of organic sulfate esters proceeds by two distinct mechanisms, water attacking at either ...
Boltes I, Czapinska H, Kahnert A, et al. 1.3 angstrom structure of arylsulfatase from Pseudomonas ae...
AbstractBackground: Sulfatases constitute a family of enzymes with a highly conserved active site re...
Bulow von R, Schmidt B, Dierks T, Figura von K, Uson I. Crystal structure of an enzyme-substrate com...
Pseudomonas aeruginosa arylsulfatase (PAS) hydrolyzes sulfate and, promiscuously, phosphate monoeste...
AbstractMammalian sulfotransferases (STs) utilize exclusively the sulfuryl group donor 3′-phosphoade...
AbstractBackground: Sulfatases catalyze the hydrolysis of sulfuric acid esters from a wide variety o...
AbstractBackground: Sulfatases catalyze the hydrolysis of sulfuric acid esters from a wide variety o...
Waldow A, Schmidt B, Dierks T, Bulow von R, Figura von K. Amino acid residues forming the active sit...