Modulating the properties of the lipase from Thermomyces lanuginosus immobilized on octyl agarose beads by altering the immobilization conditions

[Display omitted] •TLL was immobilized on octyl agarose under very different.•In all cases, 100% immobilization yield was obtained.•The immobilized enzyme properties strongly depended on the immobilization conditions.•Optimal immobilization conditions depended on the substrate used.•Fluorescence stu...

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Veröffentlicht in:Enzyme and microbial technology 2020-02, Vol.133, p.109461-109461, Article 109461
Hauptverfasser: Lokha, Yuliya, Arana-Peña, Sara, Rios, Nathalia S., Mendez-Sanchez, Carmen, Gonçalves, Luciana R.B., Lopez-Gallego, Fernando, Fernandez-Lafuente, Roberto
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Sprache:eng
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Zusammenfassung:[Display omitted] •TLL was immobilized on octyl agarose under very different.•In all cases, 100% immobilization yield was obtained.•The immobilized enzyme properties strongly depended on the immobilization conditions.•Optimal immobilization conditions depended on the substrate used.•Fluorescence studies confirm the different structures of the biocatalysts. The lipase from Thermomyces lanuginosus (TLL) has been immobilized on octyl-agarose beads via interfacial activation under 16 different conditions (changing the immobilization pH, the ionic strength, the presence of additives like calcium, phosphate or glycerol) and using a low loading (1 mg/g support). Then, the properties of the different biocatalysts have been evaluated: stability at pH 7.0 and 70 °C and activity versus p-nitro phenyl propionate, triacetin and R- and S- methyl mandelate. Results clearly indicate that the immobilization conditions determine the final enzyme properties, altering enzyme stability (by 10 folds), activity (by 8 folds using R- methyl mandelate) and specificity (VR/VS changed from 0.7 to 2.3 using mandelate esters). For instance, the enzymes immobilized at pH 7.0 using 5 mM buffer were the most stable preparations, while the presence of 250 mM sodium phosphate greatly decreased the final enzyme stability. The biocatalyst stability of TLL increased with increasing NaCl in the immobilization buffer at pH 5. Fluorescence studies confirmed that the conformation of the different immobilized enzymes were different, despite being a physical and reversible immobilization method. Thus, the immobilization of TLL on octyl agarose beads under different conditions produced biocatalysts with different properties, the optimal condition depends on the studied reaction and condition.
ISSN:0141-0229
1879-0909
DOI:10.1016/j.enzmictec.2019.109461