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Structural and biochemical analysis of family 92 carbohydrate-binding modules uncovers multivalent binding to β-glucans. | LitMetric

AI Article Synopsis

  • * The study focuses on CBM family 92, which specifically binds to β-1,6-glucans while showing diversity in the enzymes associated with it.
  • * The research includes crystal structures of two CBM92 proteins and identifies key tryptophan residues that aid in ligand binding, suggesting potential applications for these proteins in linking polysaccharides and enzyme immobilization.

Article Abstract

Carbohydrate-binding modules (CBMs) are non-catalytic proteins found appended to carbohydrate-active enzymes. Soil and marine bacteria secrete such enzymes to scavenge nutrition, and they often use CBMs to improve reaction rates and retention of released sugars. Here we present a structural and functional analysis of the recently established CBM family 92. All proteins analysed bind preferentially to β-1,6-glucans. This contrasts with the diversity of predicted substrates among the enzymes attached to CBM92 domains. We present crystal structures for two proteins, and confirm by mutagenesis that tryptophan residues permit ligand binding at three distinct functional binding sites on each protein. Multivalent CBM families are uncommon, so the establishment and structural characterisation of CBM92 enriches the classification database and will facilitate functional prediction in future projects. We propose that CBM92 proteins may cross-link polysaccharides in nature, and might have use in novel strategies for enzyme immobilisation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11039641PMC
http://dx.doi.org/10.1038/s41467-024-47584-yDOI Listing

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