Applying unconventional secretion of the endochitinase Cts1 to export heterologous proteins in Ustilago maydis

2012 ◽  
Vol 161 (2) ◽  
pp. 80-91 ◽  
Author(s):  
Janpeter Stock ◽  
Parveen Sarkari ◽  
Saskia Kreibich ◽  
Thomas Brefort ◽  
Michael Feldbrügge ◽  
...  
2021 ◽  
Vol 7 (3) ◽  
pp. 179
Author(s):  
Kai P. Hussnaetter ◽  
Magnus Philipp ◽  
Kira Müntjes ◽  
Michael Feldbrügge ◽  
Kerstin Schipper

Heterologous protein production is a highly demanded biotechnological process. Secretion of the product to the culture broth is advantageous because it drastically reduces downstream processing costs. We exploit unconventional secretion for heterologous protein expression in the fungal model microorganism Ustilago maydis. Proteins of interest are fused to carrier chitinase Cts1 for export via the fragmentation zone of dividing yeast cells in a lock-type mechanism. The kinase Don3 is essential for functional assembly of the fragmentation zone and hence, for release of Cts1-fusion proteins. Here, we are first to develop regulatory systems for unconventional protein secretion using Don3 as a gatekeeper to control when export occurs. This enables uncoupling the accumulation of biomass and protein synthesis of a product of choice from its export. Regulation was successfully established at two different levels using transcriptional and post-translational induction strategies. As a proof-of-principle, we applied autoinduction based on transcriptional don3 regulation for the production and secretion of functional anti-Gfp nanobodies. The presented developments comprise tailored solutions for differentially prized products and thus constitute another important step towards a competitive protein production platform.


Author(s):  
Magnus Philipp ◽  
Kai P. Hussnaetter ◽  
Michèle Reindl ◽  
Kira Müntjes ◽  
Michael Feldbrügge ◽  
...  

Recombinant proteins are ubiquitously applied in fields like research, pharma, diagnostics or the chemical industry. To provide the full range of useful proteins, novel expression hosts need to be established for proteins that are not sufficiently produced by the standard platform organisms. Unconventional secretion in the fungal model Ustilago maydis is an attractive novel option for export of heterologous proteins without N-glycosylation using chitinase Cts1 as a carrier. Recently, a novel factor essential for unconventional Cts1 secretion termed Jps1 was identified. Here, we show that Jps1 is unconventionally secreted using a fusion to bacterial β-glucuronidase as an established reporter. Interestingly, the experiment also demonstrates that the protein functions as an alternative carrier for heterologous proteins, showing about 2-fold higher reporter activity than the Cts1 fusion in the supernatant. In addition, Jps1-mediated secretion even allowed for efficient export of functional firefly luciferase as a novel secretion target which could not be achieved with Cts1. As an application for a relevant pharmaceutical target, export of functional bi-specific synthetic nanobodies directed against the SARS-CoV2 spike protein was demonstrated. The establishment of an alternative efficient carrier thus constitutes an excellent expansion of the existing secretion platform.


2018 ◽  
Vol 284 ◽  
pp. 37-51 ◽  
Author(s):  
Marius Terfrüchte ◽  
Sandra Wewetzer ◽  
Parveen Sarkari ◽  
Daniel Stollewerk ◽  
Mirita Franz-Wachtel ◽  
...  

2019 ◽  
Vol 1867 (12) ◽  
pp. 140154 ◽  
Author(s):  
Jörn Aschenbroich ◽  
Kai P. Hussnaetter ◽  
Peter Stoffels ◽  
Thorsten Langner ◽  
Sabrina Zander ◽  
...  

2021 ◽  
Author(s):  
Kai P. Hussnaetter ◽  
Magnus Philipp ◽  
Kira Müntjes ◽  
Michael Feldbrügge ◽  
Kerstin Schipper

AbstractHeterologous protein production is a highly demanded biotechnological process. Secretion of the product to the culture broth is advantageous because it drastically reduces downstream pro-cessing costs. We exploit unconventional secretion for heterologous protein expression in the fungal model microorganism Ustilago maydis. Proteins of interest are fused to carrier chitinase Cts1 for export via the fragmentation zone of dividing yeast cells in a lock-type mechanism. Here, we are first to develop regulatory systems for unconventional protein secretion. This enables uncoupling the accumulation of biomass and protein synthesis of a product of choice from its export. Regulation was successfully established at two different levels using transcriptional and post-translational induction strategies. As a proof-of-principle, we applied autoinduction based on transcriptional regulation for the production and secretion of functional anti-Gfp nanobodies. The presented developments comprise tailored solutions for differentially prized products and thus constitute another important step towards a competitive protein production platform.


2017 ◽  
Vol 18 (5) ◽  
pp. 937 ◽  
Author(s):  
Marius Terfrüchte ◽  
Michèle Reindl ◽  
Silke Jankowski ◽  
Parveen Sarkari ◽  
Michael Feldbrügge ◽  
...  

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