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Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress

The ER chaperone calreticulin (CALR) also has extracellular functions and can exit the mammalian cell in response to various factors, although the mechanism by which this takes place is unknown. The yeast Saccharomyces cerevisiae efficiently secretes human CALR, and the analysis of this process in y...

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Autores principales: Zinkevičiūtė, Rūta, Ražanskas, Raimundas, Kaupinis, Algirdas, Macijauskaitė, Neringa, Čiplys, Evaldas, Houen, Gunnar, Slibinskas, Rimantas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9164041/
https://www.ncbi.nlm.nih.gov/pubmed/35678651
http://dx.doi.org/10.3390/cimb44050122
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author Zinkevičiūtė, Rūta
Ražanskas, Raimundas
Kaupinis, Algirdas
Macijauskaitė, Neringa
Čiplys, Evaldas
Houen, Gunnar
Slibinskas, Rimantas
author_facet Zinkevičiūtė, Rūta
Ražanskas, Raimundas
Kaupinis, Algirdas
Macijauskaitė, Neringa
Čiplys, Evaldas
Houen, Gunnar
Slibinskas, Rimantas
author_sort Zinkevičiūtė, Rūta
collection PubMed
description The ER chaperone calreticulin (CALR) also has extracellular functions and can exit the mammalian cell in response to various factors, although the mechanism by which this takes place is unknown. The yeast Saccharomyces cerevisiae efficiently secretes human CALR, and the analysis of this process in yeast could help to clarify how it gets out of eukaryotic cells. We have achieved a secretion titer of about 140 mg/L CALR in our S. cerevisiae system. Here, we present a comparative quantitative whole proteome study in CALR-secreting yeast using non-equilibrium pH gradient electrophoresis (NEPHGE)-based two-dimensional gel electrophoresis (2DE) as well as liquid chromatography mass spectrometry in data-independent analysis mode (LC-MS(E)). A reconstructed carrier ampholyte (CA) composition of NEPHGE-based first-dimension separation for 2DE could be used instead of formerly commercially available gels. Using LC-MS(E), we identified 1574 proteins, 20 of which exhibited differential expression. The largest group of differentially expressed proteins were structural ribosomal proteins involved in translation. Interestingly, we did not find any signs of cellular stress which is usually observed in recombinant protein-producing yeast, and we did not identify any secretory pathway proteins that exhibited changes in expression. Taken together, high-level secretion of human recombinant CALR protein in S. cerevisiae does not induce cellular stress and does not burden the cellular secretory machinery. There are only small changes in the cellular proteome of yeast secreting CALR at a high level.
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spelling pubmed-91640412022-06-04 Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress Zinkevičiūtė, Rūta Ražanskas, Raimundas Kaupinis, Algirdas Macijauskaitė, Neringa Čiplys, Evaldas Houen, Gunnar Slibinskas, Rimantas Curr Issues Mol Biol Article The ER chaperone calreticulin (CALR) also has extracellular functions and can exit the mammalian cell in response to various factors, although the mechanism by which this takes place is unknown. The yeast Saccharomyces cerevisiae efficiently secretes human CALR, and the analysis of this process in yeast could help to clarify how it gets out of eukaryotic cells. We have achieved a secretion titer of about 140 mg/L CALR in our S. cerevisiae system. Here, we present a comparative quantitative whole proteome study in CALR-secreting yeast using non-equilibrium pH gradient electrophoresis (NEPHGE)-based two-dimensional gel electrophoresis (2DE) as well as liquid chromatography mass spectrometry in data-independent analysis mode (LC-MS(E)). A reconstructed carrier ampholyte (CA) composition of NEPHGE-based first-dimension separation for 2DE could be used instead of formerly commercially available gels. Using LC-MS(E), we identified 1574 proteins, 20 of which exhibited differential expression. The largest group of differentially expressed proteins were structural ribosomal proteins involved in translation. Interestingly, we did not find any signs of cellular stress which is usually observed in recombinant protein-producing yeast, and we did not identify any secretory pathway proteins that exhibited changes in expression. Taken together, high-level secretion of human recombinant CALR protein in S. cerevisiae does not induce cellular stress and does not burden the cellular secretory machinery. There are only small changes in the cellular proteome of yeast secreting CALR at a high level. MDPI 2022-04-19 /pmc/articles/PMC9164041/ /pubmed/35678651 http://dx.doi.org/10.3390/cimb44050122 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zinkevičiūtė, Rūta
Ražanskas, Raimundas
Kaupinis, Algirdas
Macijauskaitė, Neringa
Čiplys, Evaldas
Houen, Gunnar
Slibinskas, Rimantas
Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress
title Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress
title_full Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress
title_fullStr Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress
title_full_unstemmed Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress
title_short Yeast Secretes High Amounts of Human Calreticulin without Cellular Stress
title_sort yeast secretes high amounts of human calreticulin without cellular stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9164041/
https://www.ncbi.nlm.nih.gov/pubmed/35678651
http://dx.doi.org/10.3390/cimb44050122
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