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Structural Characterization of Mannan Cell Wall Polysaccharides in Plants Using PACE
Published on: October 16, 2017
Biochemical characterization and catalytic features of a GH5 endo-β-1,4-mannanase from Aspergillus niger code 1234
Francinaldo Silva Tomaz1, Roberta Pereira Espinheira2, Raquel Coldibelli Ribeiro1
1Laboratório Bioetanol, Departamento de Bioquímica, Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro 21941-914, Brazil.
Abstract:
Endo-β-1,4-mannanases (EC 3.2.1.78) hydrolyze β-1,4-mannan backbones, enabling the conversion of mannan-rich biomass into value-added products such as mannose and mannan-oligosaccharides (MOS). In this study, an endo-β-1,4-mannanase produced by Aspergillus niger code 1234 under submerged cultivation was purified and biochemically characterized. The purification strategy included ultrafiltration (10 kDa), followed by size-exclusion and ion-exchange chromatography using Sephadex® G-75 and DEAE-Sephacel™, respectively. The purified enzyme (AnMan5A-like) was confirmed by SDS-PAGE and mass spectrometry. AnMan5A-like has an estimated molecular mass of 41.2 kDa, an optimum activity at 62 ºC and pH 3.9, and a specific endo-β-1,4-mannanase activity of 79.30 IU/g of protein. The enzyme exhibited remarkable thermostability, retaining more than 95% of its residual activity after 72 h at 50 °C and 60 °C, respectively. Kinetic analysis revealed a Km of 2.52 mg/mL and a Vmax of 2.20 µmol/min/mL using Locust Bean Gum as the substrate. Enzymatic hydrolysis assays demonstrated the production of MOS with degrees of polymerization up to six. Structural analysis suggested a catalytic cleft capable of accommodating five subsites and favoring mannopentaose as a transient substrate that is rapidly cleaved into mannobiose and mannotriose. These results highlight the potential of functional oligosaccharides production via conversion of mannan-rich biomass using a stable endo-β-1,4-mannanases from A. niger code 1234. Its high catalytic performance, combined with thermostability under acidic conditions, makes AnMan5A-likea promising biocatalyst for industrial applications in the food, animal feed, and biorefinery sectors.

