AI Article Synopsis

  • Chitinases break down chitin into smaller chains called chitooligosaccharides, and the chitinase from Serratia proteamaculans (SpChiD) has both hydrolysis and transglycosylation abilities.
  • A detailed 3D structure of SpChiD was resolved at 1.49 Å, revealing a unique (β/α)8 TIM barrel and a R-factor of 16.2%, with a total of 406 amino acids and specific catalytic residues.
  • The positioning of a loop in SpChiD impacts its substrate-binding capabilities and transglycosylation activity, marking it as the first known single-domain chitinase with these combined functions.

Article Abstract

Chitinases are known to hydrolyze chitin polymers into smaller chitooligosaccharides. Chitinase from bacterium Serratia proteamaculans (SpChiD) is found to exhibit both hydrolysis and transglycosylation activities. SpChiD belongs to family 18 of glycosyl hydrolases (GH-18). The recombinant SpChiD was crystallized and its three-dimensional structure was determined at 1.49 Å resolution. The structure was refined to an R-factor of 16.2%. SpChiD consists of 406 amino acid residues. The polypeptide chain of SpChiD adopts a (β/α)8 triosephosphate isomerase (TIM) barrel structure. SpChiD contains three acidic residues, Asp149, Asp151 and Glu153 as part of its catalytic scheme. While both Asp149 and Glu153 adopt single conformations, Asp151 is observed in two conformations. The substrate binding cleft is partially obstructed by a protruding loop, Asn30 - Asp42 causing a considerable reduction in the number of available subsites in the substrate binding site. The positioning of loop, Asn30 - Asp42 appears to be responsible for the transglycosylation activity. The structure determination indicated the presence of sulfone Met89 (SMet89). The sulfone methionine residue is located on the surface of the protein at a site where extra domain is attached in other chitinases. This is the first structure of a single domain chitinase with hydrolytic and transglycosylation activities.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3867703PMC

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