Literature DB >> 33941018

Solid-state fermentation production and characterization of an alkaline lipase from a newly isolated Burkholderia gladioli strain.

Pedro Alves Martins1,2, Thályta Fraga Pacheco1, Brenda Rabello de Camargo1, Janice Lisboa De Marco3, Thaís Fabiana Chan Salum1.   

Abstract

The newly isolated Burkholderia gladioli BRM58833 strain was shown to secrete an alkaline lipase highly active and stable in organic solvents. Lipase production was optimized through the cultivation of the strain by solid-state fermentation in wheat bran. The lipase extraction conditions were also optimized. The low-cost extract obtained has shown a high hydrolytic activity of 1096.7 ± 39.3 U·gds-1 (units per gram of dry solids) against pNPP and 374.2 ± 20.4 U·gds-1 against triolein. Proteomic analysis revealed the optimized extract is composed of two esterases and three true lipases, showing a preference for long-chain substrates. The highest activity was obtained at 50 °C and pH 9. However, the extract maintained more than 50% of its maximum activity between pH 8.0 and 10.0 and throughout the whole temperature range evaluated (32-70 °C). The enzymes were inhibited by SDS, EDTA, ZnSO4 and FeCl3 and activated by FeSO4, MgCl2 and BaCl2. The lipases conserved their activity when incubated in solvents as acetonitrile, diethyl ether, n-heptane n-hexane, toluene, methanol and t-butanol. The resistance of these lipases to solvents and expressive thermostability when compared to other lipases, reveal their potential both in hydrolysis reactions and in synthesis of esters.

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Keywords:  Burkholderia gladioli; Solid-state fermentation; lipase; process optimization

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Year:  2021        PMID: 33941018     DOI: 10.1080/10826068.2021.1910959

Source DB:  PubMed          Journal:  Prep Biochem Biotechnol        ISSN: 1082-6068            Impact factor:   2.162


  1 in total

1.  Omega-3 production by fish oil hydrolysis using a lipase from Burkholderia gladioli BRM58833 immobilized and stabilized by post-immobilization techniques.

Authors:  Pedro Alves Martins; Lara Trobo-Maseda; Frederico Alves Lima; Wilson Galvão de Morais Júnior; Janice Lisboa De Marco; Thaís Fabiana Chan Salum; José Manuel Guisán
Journal:  Biochem Biophys Rep       Date:  2022-01-28
  1 in total

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