Literature DB >> 25659635

Bacterial cell-surface displaying of thermo-tolerant glutamate dehydrogenase and its application in L-glutamate assay.

Jianxia Song1, Bo Liang2, Dongfei Han2, Xiangjiang Tang2, Qiaolin Lang2, Ruirui Feng3, Lihui Han4, Aihua Liu5.   

Abstract

In this paper, glutamate dehydrogenase (Gldh) is reported to efficiently display on Escherichia coli cell surface by using N-terminal region of ice the nucleation protein as an anchoring motif. The presence of Gldh was confirmed by SDS-PAGE and enzyme activity assay. Gldh was detected mainly in the outer membrane fraction, suggesting that the Gldh was displayed on the bacterial cell surface. The optimal temperature and pH for the bacteria cell-surface displayed Gldh (bacteria-Gldh) were 70°C and 9.0, respectively. Additionally, the fusion protein retained almost 100% of its initial enzymatic activity after 1 month incubation at 4°C. Transition metal ions could inhibit the enzyme activity to different extents, while common anions had little adverse effect on enzyme activity. Importantly, the displayed Gldh is most specific to l-glutamate reported so far. The bacterial Gldh was enabled to catalyze oxidization of l-glutamate with NADP(+) as cofactor, and the resultant NADPH can be detected spectrometrically at 340nm. The bacterial-Gldh based l-glutamate assay was established, where the absorbance at 340nm increased linearly with the increasing l-glutamate concentration within the range of 10-400μM. Further, the proposed approach was successfully applied to measure l-glutamate in real samples.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Bacterial surface display; Enzyme inhibition; Thermo-tolerant glutamate dehydrogenase; l-Glutamate; l-Glutamate detection

Mesh:

Substances:

Year:  2014        PMID: 25659635     DOI: 10.1016/j.enzmictec.2014.12.002

Source DB:  PubMed          Journal:  Enzyme Microb Technol        ISSN: 0141-0229            Impact factor:   3.493


  3 in total

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Journal:  Biosens Bioelectron       Date:  2021-05-23       Impact factor: 10.618

2.  Simultaneous hydrolysis of carbaryl and chlorpyrifos by Stenotrophomonas sp. strain YC-1 with surface-displayed carbaryl hydrolase.

Authors:  Chao Yang; Xiaoqing Xu; Yanping Liu; Hong Jiang; Yunbo Wu; Ping Xu; Ruihua Liu
Journal:  Sci Rep       Date:  2017-10-17       Impact factor: 4.379

Review 3.  Current Technological Improvements in Enzymes toward Their Biotechnological Applications.

Authors:  Mehak Baweja; Lata Nain; Yutaka Kawarabayasi; Pratyoosh Shukla
Journal:  Front Microbiol       Date:  2016-06-16       Impact factor: 5.640

  3 in total

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