Barik_2022_Int.J.Anal.Chem_2022_6403090

Reference

Title : Purification and Optimization of Extracellular Lipase from a Novel Strain Kocuria flava Y4 - Barik_2022_Int.J.Anal.Chem_2022_6403090
Author(s) : Barik A , Sen SK , Rajhans G , Raut S
Ref : Int J Analytical Chemistry , 2022 :6403090 , 2022
Abstract :

The exogenous lipolytic activities of Kocuria sp. have been recognized earlier but the genus further contains many more unexplored strains. In this study, the extracellular lipase activity of Kocuria flava Y4 (GenBank accession no. MT773277), isolated from Dioscorea villosa during our previous study, was regulated by different physicochemical parameters, such as pH, temperature, shaking speed, and incubation time. For efficient immobilization of the extracellular lipase, 4% sodium alginate, 50 mL of 25 nM CaCl(2).2H(2)O solution, and 15 min. Hardening time of gel beads in calcium chloride was used. For the first time, K. flava Y4 lipase was purified using ammonium sulphate precipitation followed by dialysis and DEAE-Sepharose anion exchange chromatography with Sepharose-6B gel filtration chromatography, yielding -15-fold purified lipase with a final yield of 96 U/mL. The SDS-PAGE of purified lipase displayed a single strong band, indicating a monomeric protein of 45 kDa. At a temperature of 35 degreesC and pH 8, the purified lipase showed maximum hydrolytic activity. Using p-nitrophenyl acetate (p-NPA) as the hydrolysis substrate, the values of K (m) and V (max) derived from the Lineweaver-Burk plot were 4.625 mM and 125 mol/min(-1)mg(-1), respectively.

PubMedSearch : Barik_2022_Int.J.Anal.Chem_2022_6403090
PubMedID: 35169395

Related information

Citations formats

Barik A, Sen SK, Rajhans G, Raut S (2022)
Purification and Optimization of Extracellular Lipase from a Novel Strain Kocuria flava Y4
Int J Analytical Chemistry 2022 :6403090

Barik A, Sen SK, Rajhans G, Raut S (2022)
Int J Analytical Chemistry 2022 :6403090