Literature DB >> 26777250

Improvement of catalytical properties of two invertases highly tolerant to sucrose after expression in Pichia pastoris. Effect of glycosylation on enzyme properties.

Ara Itzel Pérez de los Santos1, Maribel Cayetano-Cruz1, Marina Gutiérrez-Antón1, Alejandro Santiago-Hernández1, Miguel Plascencia-Espinosa2, Amelia Farrés3, María Eugenia Hidalgo-Lara4.   

Abstract

Zymomonas mobilis genes encoding INVA and INVB were expressed in Pichia pastoris, under the control of the strong AOX1 promoter, and the recombinant enzymes were named INVAAOX1 and INVBAOX1. The expression levels of INVAAOX1 (1660 U/mg) and INVBAOX1 (1993 U/mg) in P. pastoris were 9- and 7-fold higher than those observed for the native INVA and INVB proteins in Z. mobilis. INVAAOX1 and INVBAOX1 displayed a 2- to 3-fold higher substrate affinity, and a 2- to 200-fold higher catalytic efficiency (kcat/KM) than that observed for native INVA and INVB from Z. mobilis. Positive Schiff staining of INVAAOX1 and INVBAOX1 suggested a glycoprotein nature of both invertases. After deglycosylation of these enzymes, denoted D-INVAAOX1 and D-INVBAOX1, they exhibited a 1.3- and 3-fold lower catalytic efficiency (107 and 164 s(-1) mM(-1), respectively), and a 1.3- to 5-fold lower thermal stability than the glycosylated forms at temperatures of 35-45 °C. After deglycosylation no effect was observed in optimal pH, being of 5.5 for INVAAOX1, INVBAOX1, D-INVAAOX1 and D-INVBAOX1. The invertase activity of both enzymes increased in 80% (INVAAOX1) and 20% (INVBAOX1) in the presence of Mn(2+) at 1 mM and 5 mM, respectively. INVAAOX1 and INVBAOX1 were highly active at sucrose concentrations of up to 400 and 300 mM, respectively; however, the tolerance to sucrose decreased to 300 mM for D-INVAAOX1. Our findings suggest that glycosylation of INVAAOX1 and INVBAOX1 plays an important role in their thermal stability, catalytic efficiency, and tolerance to sucrose. In conclusion, the expression of INVA and INVB from Z. mobilis in P. pastoris yields new catalysts with improved catalytic properties, making them suitable candidates for a number of industrial applications or for the improvement of ethanol production from cane molasses.
Copyright © 2015 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  AOX1 promoter; Effect of glycosylation; Intracellular/extracellular invertases; Pichia pastoris; Protein expression; Zymomonas mobilis

Mesh:

Substances:

Year:  2015        PMID: 26777250     DOI: 10.1016/j.enzmictec.2015.11.008

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


  4 in total

1.  Cultivation of Pichia pastoris carrying the scFv anti LDL (-) antibody fragment. Effect of preculture carbon source.

Authors:  Cesar Andres Diaz Arias; Daniela de Araujo Viana Marques; Luciana Pellegrini Malpiedi; Andrea Queiroz Maranhão; Dulcineia Abdalla Saes Parra; Attilio Converti; Adalberto Pessoa Junior
Journal:  Braz J Microbiol       Date:  2017-02-09       Impact factor: 2.476

2.  Systematic assessment of Pichia pastoris system for optimized β -galactosidase production.

Authors:  Hongbing Sun; Olufemi Emmanuel Bankefa; Ijeoma Onyinyechi Ijeoma; Liangtian Miao; Taicheng Zhu; Yin Li
Journal:  Synth Syst Biotechnol       Date:  2017-04-25

3.  Identification and Immobilization of an Invertase With High Specific Activity and Sucrose Tolerance Ability of Gongronella sp. w5 for High Fructose Syrup Preparation.

Authors:  Gang Zhou; Can Peng; Xiaosa Liu; Fei Chang; Yazhong Xiao; Juanjuan Liu; Zemin Fang
Journal:  Front Microbiol       Date:  2020-04-09       Impact factor: 5.640

4.  Improved Production of Recombinant Myrosinase in Pichia pastoris.

Authors:  Zuzana Rosenbergová; Zuzana Hegyi; Miroslav Ferko; Natália Andelová; Martin Rebroš
Journal:  Int J Mol Sci       Date:  2021-11-02       Impact factor: 5.923

  4 in total

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