Recombinant protein production in Pichia pastoris: from transcriptionally redesigned strains to bioprocess optimization and metabolic modelling

Author:

Ergün Burcu Gündüz123ORCID,Berrios Julio4,Binay Barış5ORCID,Fickers Patrick6

Affiliation:

1. Biotechnology Research Center, Ministry of Agriculture and Forestry, 06330 Ankara, Turkey

2. Department of Chemical Engineering, Middle East Technical University, 06800 Ankara, Turkey

3. UNAM-National Nanotechnology Research Center, Bilkent University, 06800 Ankara, Turkey

4. School of Biochemical Engineering, Pontificia Universidad Católica de Valparaíso, Av. Brasil 2085, Valparaíso 2340000, Chile

5. Gebze Technical University, Department of Bioengineering, Gebze, 41400, Kocaeli, Turkey

6. Microbial Processes and Interactions, TERRA Teaching and Research Centre, University of Liège, Gembloux Agro-BioTech, Av. de la Faculté 2B, 5030 Gembloux, Belgium

Abstract

ABSTRACT Pichia pastoris is one of the most widely used host for the production of recombinant proteins. Expression systems that rely mostly on promoters from genes encoding alcohol oxidase 1 or glyceraldehyde-3-phosphate dehydrogenase have been developed together with related bioreactor operation strategies based on carbon sources such as methanol, glycerol, or glucose. Although, these processes are relatively efficient and easy to use, there have been notable improvements over the last twenty years to better control gene expression from these promoters and their engineered variants. Methanol-free and more efficient protein production platforms have been developed by engineering promoters and transcription factors. The production window of P. pastoris has been also extended by using alternative feedstocks including ethanol, lactic acid, mannitol, sorbitol, sucrose, xylose, gluconate, formate or rhamnose. Herein, the specific aspects that are emerging as key parameters for recombinant protein synthesis are discussed. For this purpose, a holistic approach has been considered to scrutinize protein production processes from strain design to bioprocess optimization, particularly focusing on promoter engineering, transcriptional circuitry redesign. This review also considers the optimization of bioprocess based on alternative carbon sources and derived co-feeding strategies. Optimization strategies for recombinant protein synthesis through metabolic modelling are also discussed.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,General Medicine,Microbiology

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