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Functional characterisation and product specificity of Endo-β-1,3-glucanase from alkalophilic bacterium, Bacillus lehensis G1

Jaafar, Nardiah Rizwana and Mohamad Khoiri, Norhazlin and Ismail, Noor Faizah and Nik Mahmood, Nik Azmi and Abdul Murad, Abdul Munir and Abu Bakar, Farah Diba and Mat Yajit, Noor Liana and Md. Illias, Rosli (2020) Functional characterisation and product specificity of Endo-β-1,3-glucanase from alkalophilic bacterium, Bacillus lehensis G1. Enzyme and Microbial Technology, 140 . ISSN 0141-0229

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Official URL: http://dx.doi.org/10.1016/j.enzmictec.2020.109625

Abstract

Endo-β-1,3-glucanase from alkalophilic bacterium, Bacillus lehensis G1 (Blg32) composed of 284 amino acids with a predicted molecular mass of 31.6 kDa is expressed in Escherichia coli and purified to homogeneity. Herein, Blg32 characteristics, substrates and product specificity as well as structural traits that might be involved in the production of sugar molecules are analysed. This enzyme functions optimally at the temperature of 70 °C, pH value of 8.0 with its catalytic activity strongly enhanced by Mn2+. Remarkably, the purified enzyme is highly stable in high temperature and alkaline conditions. It exhibits the highest activity on laminarin (376.73 U/mg) followed by curdlan and yeast β-glucan. Blg32 activity increased by 62% towards soluble substrate (laminarin) compared to insoluble substrate (curdlan). Hydrolytic products of laminarin were oligosaccharides with degree of polymerisation (DP) of 1 to 5 with the main product being laminaritriose (DP3). This suggests that the active site of Blg32 could recognise up to five glucose units. High concentration of Blg32 mainly produces glucose whilst low concentration of Blg32 yields oligosaccharides with different DP (predominantly DP3). A theoretical structural model of Blg32 was constructed and structural analysis revealed that Trp156 is involved in multiple hydrophobic stacking interactions. The amino acid was predicted to participate in substrate recognition and binding. It was also exhibited that catalytic groove of Blg32 has a narrow angle, thus limiting the substrate binding reaction. All these properties and knowledge of the subsites are suggested to be related to the possible mode of action of how Blg32 produces glucooligosaccharides.

Item Type:Article
Uncontrolled Keywords:degree of polymerisation, glucanase, glycoside hydrolase, laminarin
Subjects:T Technology > TP Chemical technology
Divisions:Chemical and Energy Engineering
ID Code:93778
Deposited By: Yanti Mohd Shah
Deposited On:31 Dec 2021 08:50
Last Modified:31 Dec 2021 08:50

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