Javascript must be enabled to continue!
Identification of proteins responsive to heterologous protein production in thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC656
View through CrossRef
AbstractThe thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC656 is a potential host for heterologous protein production. However, overproduction of heterologous protein can induce cellular stress and limit the level of its secretion. To improve the secretion of heterologous protein, we identified the candidate proteins with altered production during production of heterologous protein in O. thermomethanolica by using a label‐free comparative proteomic approach. Four hundred sixty‐four proteins with various biological functions showed differential abundance between O. thermomethanolica expressing fungal xylanase (OT + Xyl) and a control strain. The induction of proteins in transport and proteasomal proteolysis was prominently observed. Eight candidate proteins involved in cell wall biosynthesis (Chs3, Gas4), chaperone (Sgt2, Pex19), glycan metabolism (Csf1), protein transport (Ypt35), and vacuole and protein sorting (Cof1, Npr2) were mutated by a CRISPR/Cas9 approach. An Sgt2 mutant showed higher phytase and xylanase activity compared with the control strain (13%–20%), whereas mutants of other genes including Cof1, Pex19, Gas4, and Ypt35 showed lower xylanase activity compared with the control strain (15%–25%). In addition, an Npr2 mutant showed defective growth, while overproduction of Npr2 enhanced xylanase activity. These results reveal genes that can be mutated to modulate heterologous protein production and growth of O. thermomethanolica TBRC656.
Title: Identification of proteins responsive to heterologous protein production in thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC656
Description:
AbstractThe thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC656 is a potential host for heterologous protein production.
However, overproduction of heterologous protein can induce cellular stress and limit the level of its secretion.
To improve the secretion of heterologous protein, we identified the candidate proteins with altered production during production of heterologous protein in O.
thermomethanolica by using a label‐free comparative proteomic approach.
Four hundred sixty‐four proteins with various biological functions showed differential abundance between O.
thermomethanolica expressing fungal xylanase (OT + Xyl) and a control strain.
The induction of proteins in transport and proteasomal proteolysis was prominently observed.
Eight candidate proteins involved in cell wall biosynthesis (Chs3, Gas4), chaperone (Sgt2, Pex19), glycan metabolism (Csf1), protein transport (Ypt35), and vacuole and protein sorting (Cof1, Npr2) were mutated by a CRISPR/Cas9 approach.
An Sgt2 mutant showed higher phytase and xylanase activity compared with the control strain (13%–20%), whereas mutants of other genes including Cof1, Pex19, Gas4, and Ypt35 showed lower xylanase activity compared with the control strain (15%–25%).
In addition, an Npr2 mutant showed defective growth, while overproduction of Npr2 enhanced xylanase activity.
These results reveal genes that can be mutated to modulate heterologous protein production and growth of O.
thermomethanolica TBRC656.
Related Results
Multiplexed CRISPR-mediated engineering of protein secretory pathway genes in the thermotolerant methylotrophic yeast Ogataea thermomethanolica
Multiplexed CRISPR-mediated engineering of protein secretory pathway genes in the thermotolerant methylotrophic yeast Ogataea thermomethanolica
CRISPR multiplex gRNA systems have been employed in genome engineering in various industrially relevant yeast species. The thermotolerant methylotrophic yeast Ogataea thermomethano...
Sucrose-inducible heterologous expression of phytase in high cell density cultivation of the thermotolerant methylotrophic yeast Ogataea thermomethanolica
Sucrose-inducible heterologous expression of phytase in high cell density cultivation of the thermotolerant methylotrophic yeast Ogataea thermomethanolica
ABSTRACT
In this study, production of fungal phytase in thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC656 employing methanol-inducible OtAOX prom...
Modulation of heterologous protein secretion in the thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC 656 by CRISPR-Cas9 system
Modulation of heterologous protein secretion in the thermotolerant methylotrophic yeast Ogataea thermomethanolica TBRC 656 by CRISPR-Cas9 system
The thermotolerant methylotrophic yeastOgataea thermomethanolicaTBRC 656 is a potential host strain for industrial protein production. Heterologous proteins are often retained intr...
Ogataea kolombanensis sp. nov., Ogataea histrianica sp. nov. and Ogataea deakii sp. nov., three novel yeast species from plant sources
Ogataea kolombanensis sp. nov., Ogataea histrianica sp. nov. and Ogataea deakii sp. nov., three novel yeast species from plant sources
Nine methanol-assimilating yeast strains isolated from olive oil sediments in Slovenia, extra virgin olive oil from Italy and rotten wood collected in Hungary were found to form th...
British Food Journal Volume 49 Issue 8 1947
British Food Journal Volume 49 Issue 8 1947
In the good old days, before civilisation and artificial eating habits caught up with mankind, the majority of people in the world got all the Vitamin B and protein their bodies ne...
Two‐Hybrid Systems to Measure Protein–Protein Interactions
Two‐Hybrid Systems to Measure Protein–Protein Interactions
Abstract
To understand how proteins function to control cellular processes, their interactions with other proteins must be identified and charac...
Sucrose‐Induced Transcriptomic Response in
Ogataea polymorpha
TBRC 4839 Reveals its Potential for Recombinant Protein Production
Sucrose‐Induced Transcriptomic Response in
Ogataea polymorpha
TBRC 4839 Reveals its Potential for Recombinant Protein Production
ABSTRACT
The thermotolerant yeast
Ogataea polymorpha
TBRC 4839 is a promising host for heterologous p...
SIN-like pathway kinases regulate the end of mitosis in the methylotrophic yeast Ogataea polymorpha
SIN-like pathway kinases regulate the end of mitosis in the methylotrophic yeast Ogataea polymorpha
AbstractThe Mitotic exit network (MEN) is a conserved signalling pathway essential for termination of mitosis in the budding yeast Saccharomyces cerevisiae. All MEN components are ...

