Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.

A separable and highly-stable enzyme system was developed by adsorption of phenylalanine ammonia lyase (PAL) from Rhodotorula glutinis in amino-functionalized macroporous silica gel and subsequent enzyme crosslinking. This resulted in the formation of cross-linked enzyme aggregates (PAL-CLEAs) into...

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Main Authors: Jian Dong Cui, Lian Lian Li, Hong Jie Bian
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3829875?pdf=render
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spelling doaj-b997aae6c1fe4724b42114ea0ee05d092020-11-25T01:52:54ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e8058110.1371/journal.pone.0080581Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.Jian Dong CuiLian Lian LiHong Jie BianA separable and highly-stable enzyme system was developed by adsorption of phenylalanine ammonia lyase (PAL) from Rhodotorula glutinis in amino-functionalized macroporous silica gel and subsequent enzyme crosslinking. This resulted in the formation of cross-linked enzyme aggregates (PAL-CLEAs) into macroporous silica gel (MSG-CLEAs). The effect of adsorptive conditions, type of aggregating agent, its concentration as well as that of cross-linking agent was studied. MSG-CLEAs production was most effective using ammonium sulfate (40%-saturation), followed by cross-linking for 1 h with 1.5% (v/v) glutaraldehyde. The resulting MSG-CLEAs extended the optimal temperature and pH range compared to free PAL and PAL-CLEAs. Moreover, MSG-CLEAs exhibited the excellent stability of the enzyme against various deactivating conditions such as temperature and denaturants, and showed higher storage stability compared to the free PAL and the conventional PAL-CLEAs. Such as, after 6 h incubation at 60°C, the MSG-CLEAs still retained more than 47% of the initial activity whereas PAL-CLEAs only retained 7% of the initial activity. Especially, the MSG-CLEAs exhibited good reusability due to its suitable size and active properties. These results indicated that PAL-CLEAs on MSG might be used as a feasible and efficient solution for improving properties of immobilized enzyme in industrial application.http://europepmc.org/articles/PMC3829875?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jian Dong Cui
Lian Lian Li
Hong Jie Bian
spellingShingle Jian Dong Cui
Lian Lian Li
Hong Jie Bian
Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
PLoS ONE
author_facet Jian Dong Cui
Lian Lian Li
Hong Jie Bian
author_sort Jian Dong Cui
title Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
title_short Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
title_full Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
title_fullStr Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
title_full_unstemmed Immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
title_sort immobilization of cross-linked phenylalanine ammonia lyase aggregates in microporous silica gel.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description A separable and highly-stable enzyme system was developed by adsorption of phenylalanine ammonia lyase (PAL) from Rhodotorula glutinis in amino-functionalized macroporous silica gel and subsequent enzyme crosslinking. This resulted in the formation of cross-linked enzyme aggregates (PAL-CLEAs) into macroporous silica gel (MSG-CLEAs). The effect of adsorptive conditions, type of aggregating agent, its concentration as well as that of cross-linking agent was studied. MSG-CLEAs production was most effective using ammonium sulfate (40%-saturation), followed by cross-linking for 1 h with 1.5% (v/v) glutaraldehyde. The resulting MSG-CLEAs extended the optimal temperature and pH range compared to free PAL and PAL-CLEAs. Moreover, MSG-CLEAs exhibited the excellent stability of the enzyme against various deactivating conditions such as temperature and denaturants, and showed higher storage stability compared to the free PAL and the conventional PAL-CLEAs. Such as, after 6 h incubation at 60°C, the MSG-CLEAs still retained more than 47% of the initial activity whereas PAL-CLEAs only retained 7% of the initial activity. Especially, the MSG-CLEAs exhibited good reusability due to its suitable size and active properties. These results indicated that PAL-CLEAs on MSG might be used as a feasible and efficient solution for improving properties of immobilized enzyme in industrial application.
url http://europepmc.org/articles/PMC3829875?pdf=render
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