AI Article Synopsis

  • A prolyl oligopeptidase domain known as TpS9 from Thermotoga petrophila RKU-1 was successfully over-expressed in a mesophilic host, showing high activity and stability as a lipolytic enzyme.
  • The enzyme belongs to the α/β-hydrolase superfamily and exhibits notable enhancements in activity with various metal ions, organic solvents, and pH conditions, making it versatile for different applications.
  • TpS9 showed excellent potential for cleaning, effectively degrading stubborn stains and animal fats, positioning it as a promising bio-additive for detergents and other industrial uses.

Article Abstract

A peptidase S9 prolyl oligopeptidase domain from Thermotoga petrophila RKU-1 (TpS9) was over-expressed as an active, soluble and hyperstable lipolytic enzyme in the mesophilic host system. The sequence analysis demonstrated, TpS9 is an esterase/lipase-like protein belongs to alpha/beta (α/β)-hydrolase superfamily with a well-conserved penta-peptide (GLSAG) motif and α/β-hydrolase fold. Various approaches (induction and cultivation) were employed to enrich TpS9 production, 6.04- and 7.26-fold increment was observed with IPTG (0.4 mM) and lactose (200 mM) in the modified 4ZB medium (pH 7.0), but with IPTG-independent auto-induction strategy 9.02-fold augmentation was achieved after 16 h incubation at 24 °C (150 rev min). Purified TpS9 showed optimal activity in McIlvaine buffer (pH 6.5) at 80-85 °C, and revealed great thermal (30-85 °C) and pH (6.0-9.0) for 8 h. No obvious constraint was perceived with various metal ions, surfactants, commercial laundry detergents, and chemical modulators. Whereas, TpS9 activity was improved with Ca, Mn, and Mg by 210 %, 142.5 %, and 134.3 %, respectively. With 2.5 M NaCl (215 %), 50 % (v/v) methanol (140 %), 50 % (v/v) ethanol (126.6 %), 50 % (v/v) n-butanol (122.3 %), 50 % (v/v) isopropanol (120.4 %), 50 % (v/v) acetone (118.6 %) and 50 % (v/v) glycerol (113.2 %) TpS9 activity was also enriched. TpS9 demonstrated great affinity toward natural oils and p-nitrophenyl ester substrates, but showed peak activity with p-nitrophenyl palmitate (3160 U mg). K, V, k, V K and k K of TpS9 with pNPP were 0.421 mM, 4015 µmol mg min, 906.4 s, 9536.8 min, and 2152.96 mM s, respectively. Moreover, TPS9 has notable ability to clean stains (5 min) and degrade the animals' fat (3 h). Hence, TpS9 is a favorable candidate as cleaning bio-additive in detergent formulation, fat degradation and various other applications.

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Source
http://dx.doi.org/10.1016/j.bioorg.2024.107658DOI Listing

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