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Review
. 2018 May:126:27-39.
doi: 10.1016/j.ejpb.2017.06.008. Epub 2017 Jun 9.

Mini review: Recombinant production of tailored bio-pharmaceuticals in different Bacillus strains and future perspectives

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Review

Mini review: Recombinant production of tailored bio-pharmaceuticals in different Bacillus strains and future perspectives

Antonia Lakowitz et al. Eur J Pharm Biopharm. 2018 May.

Abstract

Bio-pharmaceuticals like antibodies, hormones and growth factors represent about one-fifth of commercial pharmaceuticals. Host candidates of growing interest for recombinant production of these proteins are strains of the genus Bacillus, long being established for biotechnological production of homologous and heterologous proteins. Bacillus strains benefit from development of efficient expression systems in the last decades and emerge as major industrial workhorses for recombinant proteins due to easy cultivation, non-pathogenicity and their ability to secrete recombinant proteins directly into extracellular medium allowing cost-effective downstream processing. Their broad product portfolio of pharmaceutically relevant recombinant proteins described in research include antibody fragments, growth factors, interferons and interleukins, insulin, penicillin G acylase, streptavidin and different kinases produced in various cultivation systems like microtiter plates, shake flasks and bioreactor systems in batch, fed-batch and continuous mode. To further improve production and secretion performance of Bacillus, bottlenecks and limiting factors concerning proteases, chaperones, secretion machinery or feedback mechanisms can be identified on different cell levels from genomics and transcriptomics via proteomics to metabolomics and fluxomics. For systematical identification of recurring patterns characteristic of given regulatory systems and key genetic targets, systems biology and omics-technology provide suitable and promising approaches, pushing Bacillus further towards industrial application for recombinant pharmaceutical protein production.

Keywords: Bacillus strains; Omics-technologies; Recombinant production; Systems biology; Tailored bio-pharmaceuticals.

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