Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells

Lipases (EC 3.1.1.3, triacylglycerol hydrolases), a subclass of the esterases (EC 3.1.1.1, carboxyl ester hydrolases) are one of the most important groups of biocatalysts for biotechnological uses such as synthesis of biopolymers and biodiesel, production of enantiopure pharmaceuticals, detergent fo...

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Main Authors: L. Paciello, C. Landi, J. Zueco, P. Parascandola
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2013-06-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/6546
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spelling doaj-92865f2c2abd4c61920e419ac1ae429c2021-02-22T20:59:14ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162013-06-013210.3303/CET1332152Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae CellsL. PacielloC. LandiJ. ZuecoP. ParascandolaLipases (EC 3.1.1.3, triacylglycerol hydrolases), a subclass of the esterases (EC 3.1.1.1, carboxyl ester hydrolases) are one of the most important groups of biocatalysts for biotechnological uses such as synthesis of biopolymers and biodiesel, production of enantiopure pharmaceuticals, detergent formulation or the production of flavour compounds. Lipases can be commercialized as free or immobilized form. Nowadays it is of great interest to obtain immobilized enzymes especially for industrial applications since immobilization confers stability giving the possibility to recover the biocatalyst after its use, simplifying downstream processing. In the present work, Lipase A from Bacillus subtilis has been expressed in different strains of the yeast S. cerevisiae as a fusion protein with the yeast cell-wall mannoprotein Pir4. The corresponding gene fusion was created by inserting all the coding sequence of the lipase A gene in the BglII restriction site of PIR4 gene, leading to the expression of a fusion protein still containing the four cysteine residues responsible for the anchorage of Pir4 to the yeast cell wall. Production of lipase as a naturally immobilized biocatalyst was carried out allowing yeast cells to proliferate in a fed-batch reactor under glucose limitation to promote a fully respiratory metabolism and consequently high biomass yield. The performance of the producer strains was evaluated in terms of cell density and enzyme productivity. A preliminary study of economic feasibility of a single fermentation run has been performed based on the experimental results obtained.https://www.cetjournal.it/index.php/cet/article/view/6546
collection DOAJ
language English
format Article
sources DOAJ
author L. Paciello
C. Landi
J. Zueco
P. Parascandola
spellingShingle L. Paciello
C. Landi
J. Zueco
P. Parascandola
Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells
Chemical Engineering Transactions
author_facet L. Paciello
C. Landi
J. Zueco
P. Parascandola
author_sort L. Paciello
title Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells
title_short Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells
title_full Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells
title_fullStr Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells
title_full_unstemmed Production in Fed-Batch Reactor of Bacillus subtilis LipaseA Immobilized on its own Producer Saccharomyces cerevisiae Cells
title_sort production in fed-batch reactor of bacillus subtilis lipasea immobilized on its own producer saccharomyces cerevisiae cells
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2013-06-01
description Lipases (EC 3.1.1.3, triacylglycerol hydrolases), a subclass of the esterases (EC 3.1.1.1, carboxyl ester hydrolases) are one of the most important groups of biocatalysts for biotechnological uses such as synthesis of biopolymers and biodiesel, production of enantiopure pharmaceuticals, detergent formulation or the production of flavour compounds. Lipases can be commercialized as free or immobilized form. Nowadays it is of great interest to obtain immobilized enzymes especially for industrial applications since immobilization confers stability giving the possibility to recover the biocatalyst after its use, simplifying downstream processing. In the present work, Lipase A from Bacillus subtilis has been expressed in different strains of the yeast S. cerevisiae as a fusion protein with the yeast cell-wall mannoprotein Pir4. The corresponding gene fusion was created by inserting all the coding sequence of the lipase A gene in the BglII restriction site of PIR4 gene, leading to the expression of a fusion protein still containing the four cysteine residues responsible for the anchorage of Pir4 to the yeast cell wall. Production of lipase as a naturally immobilized biocatalyst was carried out allowing yeast cells to proliferate in a fed-batch reactor under glucose limitation to promote a fully respiratory metabolism and consequently high biomass yield. The performance of the producer strains was evaluated in terms of cell density and enzyme productivity. A preliminary study of economic feasibility of a single fermentation run has been performed based on the experimental results obtained.
url https://www.cetjournal.it/index.php/cet/article/view/6546
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