Characterization of two novel highly active glycoside hydrolase family 53 endo-1,4-β-galactanases and their synergism with other carbohydrases in plant polysaccharide decomposition.

Int J Biol Macromol

Research Center of Chinese Herbal Resource Science and Engineering, School of Pharmaceutical Sciences, Guangzhou University of Chinese Medicine, Guangzhou 510006, Guangdong, China; Key Laboratory of Chinese Medicinal Resource from Lingnan (Guangzhou University of Chinese Medicine), Ministry of Education of the People's Republic of China, Guangzhou 510006, Guangdong, China. Electronic address:

Published: January 2023

AI Article Synopsis

  • Two new endo-1,4-β-galactanases, Bs936 and Bs4828, were identified, showing optimal activity at different pH and temperature conditions (pH 5.5/55°C and pH 6.5/65°C).
  • Both enzymes displayed high stability across a range of pH levels, maintaining significant activity even after extended heat treatment, with Bs936 retaining about 75% activity at 45°C and Bs4828 remaining fully active at 50°C.
  • These enzymes exhibited strong synergistic effects when combined with other enzymes to enhance the hydrolysis of various polysaccharides, significantly contributing to the understanding of GH53 enzymes in carbohydrate breakdown.

Article Abstract

Two novel Bacillus glycoside hydrolase family 53 (GH53) endo-1,4-β-galactanases (Bs936 and Bs4828) were identified. The recombinant Bs936 and Bs4828 displayed maximal activities at pH 5.5/55 °C and pH 6.5/65 °C, respectively. Stability analyses revealed that the enzymes were stable between pH 4.5-10, retaining over 80% activities after 12 h incubation at 25 °C. Moreover, Bs936 maintained about 75% activity after being treated at 45 °C for 2 h, while Bs4828 kept full activity after 4 h of incubation at 50 °C. Importantly, Bs936 and Bs4828 exhibited good activity towards β-1,4-galactan, showing specific activities of 1859.46- and 3110.79 U/mg towards potato galactan, respectively. The corresponding K and k/K were 4.93 mg/mL and 296.35 mL/mg/s for Bs936, and 6.60 mg/mL and 707.12 mL/mg/s for Bs4828. Extensive synergy assays revealed that each endo-1,4-β-galactanase acted synergistically with the other β-galactosidase (Bs937 or Bs4829), endo-1,5-α-L-arabinosidase (BsAbn2) and an endoxylanase/endoglucanase+cellulase mixture (BaXynA + LsCel) towards the hydrolysis of galactan, debranched arabinan/arabinan, and pretreated corn stover, respectively. The corresponding degrees of synergy were 1.28, 1.17/1.09, and 1.15 for Bs486 and 1.55, 1.04/1.08, and 1.11 for Bs4828, respectively. This study expands the repertoire of GH53 enzymes, and demonstrates the role of two highly active endo-1,4-β-galactanases in polysaccharides hydrolysis.

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Source
http://dx.doi.org/10.1016/j.ijbiomac.2022.10.154DOI Listing

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