AI Article Synopsis

  • The gene araA from Lactobacillus plantarum NC8 was successfully cloned and expressed in E. coli, producing an l-arabinose isomerase (l-AI) that shares substantial similarity with l-AIs from other bacteria.
  • The purified enzyme is a hexamer with optimal activity at 60°C and pH 7.5, requiring divalent cations for maximum function and showing notable stability in acidic conditions.
  • The enzyme demonstrated greater catalytic efficiency for l-arabinose compared to d-galactose, achieving a bioconversion yield of 30% for converting d-galactose to d-tagatose after 6 hours.

Article Abstract

Gene araA encoding the l-arabinose isomerase (l-AI) from Lactobacillus plantarum NC8 was cloned and expressed in Escherichia coli. It encodes a polypeptide of 474 residues having 55% identities with l-AIs from Bacillus stearothermophilus US100 and Thermus sp. IM6501. The active form of the purified recombinant l-AI NC8 enzyme is a hexamer composed of six identical 55-kDa subunits. The purified enzyme was optimally active at 60 degrees C and pH 7.5. It required divalent cations such as Co(2+) and Mn(2+) for maximal activity and thermostability. The l-AI NC8 was exceptionally active and stable at acidic pH. Indeed, it exhibited 68% of its maximal activity at pH 5.5 and retained 89% of activity after a 24-h incubation at pH 5. The apparent K(m) values of the enzyme for l-arabinose and d-galactose were 43.4 and 69.7 mM, respectively, and its catalytic efficiency was c. 10-fold higher for the physiological substrate l-arabinose (15.5 mM(-1) min(-1)) than d-galactose (1.6 mM(-1) min(-1)). The bioconversion yield of d-galactose to d-tagatose by the purified l-AI NC8 after 6 h at 60 degrees C was 30%.

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Source
http://dx.doi.org/10.1111/j.1574-6968.2007.00961.xDOI Listing

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Article Synopsis
  • The gene araA from Lactobacillus plantarum NC8 was successfully cloned and expressed in E. coli, producing an l-arabinose isomerase (l-AI) that shares substantial similarity with l-AIs from other bacteria.
  • The purified enzyme is a hexamer with optimal activity at 60°C and pH 7.5, requiring divalent cations for maximum function and showing notable stability in acidic conditions.
  • The enzyme demonstrated greater catalytic efficiency for l-arabinose compared to d-galactose, achieving a bioconversion yield of 30% for converting d-galactose to d-tagatose after 6 hours.
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