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1.
J Struct Biol ; 195(3): 286-293, 2016 09.
Article in English | MEDLINE | ID: mdl-27456364

ABSTRACT

Enzymes of carbohydrate esterase (CE) family 14 catalyze hydrolysis of N-acetyl groups at the non-reducing end of the N-acetylglucosamine (GlcNAc) residue of chitooligosaccharides or related compounds. N,N'-diacetylchitobiose deacetylase (Dac) belongs to the CE-14 family and plays a role in the chitinolytic pathway in archaea by deacetylating N,N'-diacetylchitobiose (GlcNAc2), which is the end product of chitinase. In this study, we revealed the structural basis of reaction specificity in CE-14 deacetylases by solving a crystal structure of Dac from Pyrococcus horikoshii (Ph-Dac) in complex with a novel reaction intermediate analog. We developed 2-deoxy-2-methylphosphoramido-d-glucose (MPG) as the analog of the tetrahedral oxyanion intermediate of the monosaccharide substrate GlcNAc. The crystal structure of Ph-Dac in complex with MPG demonstrated that Arg92, Asp115, and His152 side chains interact with hydroxyl groups of the glucose moiety of the non-reducing-end GlcNAc residue. The amino acid residues responsible for recognition of the MPG glucose moiety are spatially conserved in other CE-14 deacetylases. Molecular dynamics simulation of the structure of the Ph-Dac-GlcNAc2 complex indicated that the reducing GlcNAc residue is placed in a large intermolecular cleft and is not involved with specific interactions with the enzyme. This observation was consistent with results indicating that Ph-Dac displayed similar kinetic parameters for both GlcNAc and GlcNAc2. This study provides the structural basis of reaction-site specificity of Dac and related CE-14 enzymes.


Subject(s)
Archaeal Proteins/chemistry , Disaccharides/chemistry , Pyrococcus horikoshii/enzymology , Amino Acid Sequence , Catalytic Domain , Chitin/analogs & derivatives , Chitosan , Crystallography, X-Ray , Hydrogen Bonding , Kinetics , Molecular Dynamics Simulation , Oligosaccharides , Phosphates/chemistry , Substrate Specificity
2.
Acta Crystallogr F Struct Biol Commun ; 71(Pt 6): 657-62, 2015 Jun.
Article in English | MEDLINE | ID: mdl-26057790

ABSTRACT

Native N,N'-diacetylchitobiose deacetylase from Pyrococcus furiosus (Pf-Dac) and its selenomethionine derivative (Se-Pf-Dac) were crystallized and analyzed in the presence and absence of cadmium ion. The four crystal structures fell into three different crystal-packing groups, with the cadmium-free Pf-Dac and Se-Pf-Dac belonging to the same space group, with homologous unit-cell parameters. The crystal structures in the presence of cadmium contained distorted octahedral cadmium complexes coordinated by three chlorides, two O atoms and an S or Se atom from the N-terminal methionine or selenomethionine, respectively. The N-terminal cadmium complex was involved in crystal contacts between symmetry-related molecules through hydrogen bonding to the N-termini. While all six N-termini of Se-Pf-Dac were involved in cadmium-complex formation, only two of the Pf-Dac N-termini participated in complex formation in the Cd-containing crystal, resulting in different crystal forms. These differences are discussed in light of the higher stability of the Cd-Se bond than the Cd-S bond. This work provides an example of the contribution of cadmium towards determining protein crystal quality and packing depending on the use of the native protein or the selenomethionine derivative.


Subject(s)
Amidohydrolases/chemistry , Archaeal Proteins/chemistry , Disaccharides/chemistry , Pyrococcus furiosus/chemistry , Amidohydrolases/genetics , Archaeal Proteins/genetics , Cadmium/chemistry , Cations, Divalent , Crystallization , Crystallography, X-Ray , Escherichia coli/genetics , Escherichia coli/metabolism , Gene Expression , Hydrogen Bonding , Models, Molecular , Pyrococcus furiosus/enzymology , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Selenium/chemistry , Selenomethionine/chemistry , Static Electricity , Sulfur/chemistry
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