Literature DB >> 23385853

Current state and recent advances in biopharmaceutical production in Escherichia coli, yeasts and mammalian cells.

Aleš Berlec1, Borut Strukelj.   

Abstract

Almost all of the 200 or so approved biopharmaceuticals have been produced in one of three host systems: the bacterium Escherichia coli, yeasts (Saccharomyces cerevisiae, Pichia pastoris) and mammalian cells. We describe the most widely used methods for the expression of recombinant proteins in the cytoplasm or periplasm of E. coli, as well as strategies for secreting the product to the growth medium. Recombinant expression in E. coli influences the cell physiology and triggers a stress response, which has to be considered in process development. Increased expression of a functional protein can be achieved by optimizing the gene, plasmid, host cell, and fermentation process. Relevant properties of two yeast expression systems, S. cerevisiae and P. pastoris, are summarized. Optimization of expression in S. cerevisiae has focused mainly on increasing the secretion, which is otherwise limiting. P. pastoris was recently approved as a host for biopharmaceutical production for the first time. It enables high-level protein production and secretion. Additionally, genetic engineering has resulted in its ability to produce recombinant proteins with humanized glycosylation patterns. Several mammalian cell lines of either rodent or human origin are also used in biopharmaceutical production. Optimization of their expression has focused on clonal selection, interference with epigenetic factors and genetic engineering. Systemic optimization approaches are applied to all cell expression systems. They feature parallel high-throughput techniques, such as DNA microarray, next-generation sequencing and proteomics, and enable simultaneous monitoring of multiple parameters. Systemic approaches, together with technological advances such as disposable bioreactors and microbioreactors, are expected to lead to increased quality and quantity of biopharmaceuticals, as well as to reduced product development times.

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Year:  2013        PMID: 23385853     DOI: 10.1007/s10295-013-1235-0

Source DB:  PubMed          Journal:  J Ind Microbiol Biotechnol        ISSN: 1367-5435            Impact factor:   3.346


  142 in total

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Journal:  Yeast       Date:  1992-06       Impact factor: 3.239

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Journal:  Biotechnol Lett       Date:  2007-01-19       Impact factor: 2.461

Review 5.  Employing epigenetics to augment the expression of therapeutic proteins in mammalian cells.

Authors:  Ted H J Kwaks; Arie P Otte
Journal:  Trends Biotechnol       Date:  2006-02-07       Impact factor: 19.536

Review 6.  Optimal and consistent protein glycosylation in mammalian cell culture.

Authors:  Patrick Hossler; Sarwat F Khattak; Zheng Jian Li
Journal:  Glycobiology       Date:  2009-06-03       Impact factor: 4.313

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Authors:  Jianwei Zhu
Journal:  Biotechnol Adv       Date:  2011-09-24       Impact factor: 14.227

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Journal:  Yeast       Date:  2005-03       Impact factor: 3.239

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Journal:  Microbiol Rev       Date:  1996-09

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Journal:  EMBO J       Date:  1998-10-01       Impact factor: 11.598

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  51 in total

1.  Glycosylation-related genes in NS0 cells are insensitive to moderately elevated ammonium concentrations.

Authors:  Arthur Nathan Brodsky; Mary Caldwell; Sooneon Bae; Sarah W Harcum
Journal:  J Biotechnol       Date:  2014-07-23       Impact factor: 3.307

2.  Inactivation of a GAL4-like transcription factor improves cell fitness and product yield in glycoengineered Pichia pastoris strains.

Authors:  Bo Jiang; Rebecca Argyros; John Bukowski; Stephanie Nelson; Nathan Sharkey; Sehoon Kim; Victoria Copeland; Robert C Davidson; Ronghua Chen; Jun Zhuang; Natarajan Sethuraman; Terrance A Stadheim
Journal:  Appl Environ Microbiol       Date:  2014-10-24       Impact factor: 4.792

Review 3.  Recent Developments in Bioprocessing of Recombinant Proteins: Expression Hosts and Process Development.

Authors:  Nagesh K Tripathi; Ambuj Shrivastava
Journal:  Front Bioeng Biotechnol       Date:  2019-12-20

Review 4.  Protein folding and secretion: mechanistic insights advancing recombinant protein production in S. cerevisiae.

Authors:  Carissa L Young; Anne S Robinson
Journal:  Curr Opin Biotechnol       Date:  2014-07-15       Impact factor: 9.740

5.  A comparative study of glycerol and sorbitol as co-substrates in methanol-induced cultures of Pichia pastoris: temperature effect and scale-up simulation.

Authors:  Julio Berrios; María-Olga Flores; Alvaro Díaz-Barrera; Claudia Altamirano; Irene Martínez; Zaida Cabrera
Journal:  J Ind Microbiol Biotechnol       Date:  2016-12-29       Impact factor: 3.346

6.  Mammalian Cell Culture as a Platform for Veterinary Vaccines.

Authors:  Thailín Lao González; Ileanet Ávalos Olivera; Alina Rodríguez-Mallon
Journal:  Methods Mol Biol       Date:  2022

7.  High Yield Expression of Recombinant Human Proteins with the Transient Transfection of HEK293 Cells in Suspension.

Authors:  Ganesh P Subedi; Roy W Johnson; Heather A Moniz; Kelley W Moremen; Adam Barb
Journal:  J Vis Exp       Date:  2015-12-28       Impact factor: 1.355

8.  Approach toward an efficient inoculum preparation stage for suspension BHK-21 cell culture.

Authors:  Eutimio Gustavo Fernández Núñez; Jaci Leme; Letícia de Almeida Parizotto; Alexandre Gonçalves de Rezende; Bruno Labate Vale da Costa; Vera Lucia Lopes Boldorini; Soraia Attie Calil Jorge; Renato Mancini Astray; Carlos Augusto Pereira; Celso Pereira Caricati; Aldo Tonso
Journal:  Cytotechnology       Date:  2014-06-19       Impact factor: 2.058

9.  TISIGNER.com: web services for improving recombinant protein production.

Authors:  Bikash K Bhandari; Chun Shen Lim; Paul P Gardner
Journal:  Nucleic Acids Res       Date:  2021-07-02       Impact factor: 16.971

10.  High-level production in a plant system of a thermostable carbonic anhydrase and its immobilization on microcrystalline cellulose beads for CO2 capture.

Authors:  Madhu Kumari; Junho Lee; Dong Wook Lee; Inhwan Hwang
Journal:  Plant Cell Rep       Date:  2020-07-10       Impact factor: 4.570

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