AI Article Synopsis

  • - Chitinase A1 (ChiA1) from Bacillus circulans WL-12 has a complex structure with various domains, including a chitin-binding domain (ChBD) that shows strong affinity for crystalline chitin.
  • - Research involving site-directed mutagenesis identified Gln679 as an important amino acid for chitin-binding alongside the already known Trp687, with mutations in these residues affecting binding activity.
  • - A nuclear magnetic resonance study revealed that mutating these residues does not significantly change the structure of ChBDChiA1, but the exact mechanism of how chitin binding occurs remains unclear.

Article Abstract

Chitinase A1 (ChiA1) from Bacillus circulans WL-12 comprises an N-terminal catalytic domain, two fibronectin type III domains, and a C-terminal chitin-binding domain (ChBD). The ChBD of ChiA1 (ChBDChiA1) belongs to carbohydrate-binding module (CBM) family 12 and specifically binds to insoluble or crystalline chitin. It has been suggested that tryptophan-687 (Trp687) is involved in the chitin-binding activity of this ChBD. Site-directed mutagenesis was used to identify additional amino acid residues required for chitin-binding activity of this domain. Furthermore, a total of 14 amino acid residues in ChBDChiA1 were carefully selected, and it was found that mutation of Gln679, which is not well-conserved in CBM family 12, significantly decreased the binding activity to colloidal chitin. A nuclear magnetic resonance study demonstrated that neither the Q679A nor the W687A mutation altered the overall structure of ChBDChiA1. Therefore, Gln679 was identified as a new residue that is involved in the chitin-binding activity of ChBDChiA1 in addition to Trp687. However, the mechanism of chitin binding by ChBD is still unknown.

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Source
http://dx.doi.org/10.1093/jb/mvt043DOI Listing

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