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  4. Molecular background of HAC1-driven improvement in the secretion of recombinant protein in Yarrowia lipolytica based on comparative transcriptomics
 
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Molecular background of HAC1-driven improvement in the secretion of recombinant protein in Yarrowia lipolytica based on comparative transcriptomics

Type
Journal article
Language
English
Date issued
2023
Author
Korpys-Woźniak, Paulina
Celińska, Ewelina 
Faculty
Wydział Nauk o Żywności i Żywieniu
Journal
Biotechnology Reports
ISSN
2215-017X
DOI
10.1016/j.btre.2023.e00801
Web address
http://www.sciencedirect.com/science/article/pii/S2215017X23000218
Volume
38
Number
June 2023
Pages from-to
e00801
Abstract (EN)
While the unfolded protein response (UPR) and its major regulator – transcription factor Hac1 are well-conserved across Eukarya, species-specific variations are repeatedly reported. Here we investigated molecular mechanisms by which co-over-expression of HAC1 improves secretion of a recombinant protein (r-Prot) in Yarrowia lipolytica, using comparative transcriptomics. Co-over-expression of HAC1 caused an >2-fold increase in secreted r-Prot, but its intracellular levels were decreased. The unconventional splicing rate of the HAC1 mRNA was counted through transcript sequencing. Multiple biological processes were affected in the HAC1-and-r-Prot co-over-expressing strain, including ribosome biogenesis, nuclear and mitochondrial events, cell cycle arrest, attenuation of gene expression by RNA polymerase III and II, as well as modulation of proteolysis and RNA metabolism; but whether the HAC1 co-over-expression/induction was the actual causative agent for these changes, was not always clear. We settled that the expression of the “conventional” HAC1 targets (KAR2 and PDI1) is not affected by its over-expression.
Keywords (EN)
  • secretion

  • heterologous protein

  • yeast

  • endoplasmic reticulum (ER) stres...

  • recombinant protein production

License
cc-by-nc-ndcc-by-nc-nd CC-BY-NC-ND - Attribution-NonCommercial-NoDerivatives
Open access date
May 8, 2023
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