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Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase

[Image: see text] Protein glycosylation is one of the most crucial and common post-translational modifications. It plays a fate-determining role and can alter many properties of proteins. Here, we engineered a Campylobacter jejuni N-linked glycosylation machinery by overexpressing one of the core gl...

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Autores principales: Bozkurt, Eray Ulaş, Çağıl, İrem Niran, Şahin Kehribar, Ebru, Işılak, Musa Efe, Şeker, Urartu Özgür Şafak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10552120/
https://www.ncbi.nlm.nih.gov/pubmed/37810695
http://dx.doi.org/10.1021/acsomega.3c04669
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author Bozkurt, Eray Ulaş
Çağıl, İrem Niran
Şahin Kehribar, Ebru
Işılak, Musa Efe
Şeker, Urartu Özgür Şafak
author_facet Bozkurt, Eray Ulaş
Çağıl, İrem Niran
Şahin Kehribar, Ebru
Işılak, Musa Efe
Şeker, Urartu Özgür Şafak
author_sort Bozkurt, Eray Ulaş
collection PubMed
description [Image: see text] Protein glycosylation is one of the most crucial and common post-translational modifications. It plays a fate-determining role and can alter many properties of proteins. Here, we engineered a Campylobacter jejuni N-linked glycosylation machinery by overexpressing one of the core glycosylation-related enzymes, PgIB, to increase the glycosylation rate. It has been previously shown that by utilizing N-linked glycosylation, certain recombinant proteins have been furnished with improved features, such as stability and solubility. We utilized N-linked glycosylation using an engineered glycosylation pathway to glycosylate a model enzyme, the alkaline phosphatase (ALP) enzyme in Escherichia coli. We have investigated the effects of glycosylation on enzyme properties. Considering the glycosylation mechanism is highly dependent on accessibility of the glycosylation tag, ALP constructs carrying the glycosylation tag at different locations of the gene have been constructed, and glycosylation rates have been calculated. Our results showed that, upon glycosylation, ALP features in terms of thermostability, proteolytic stability, tolerance to suboptimal pH, and denaturing conditions are dramatically improved. The results indicated that the N-linked glycosylation mechanism can be employed for protein manipulation for industrial applications.
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spelling pubmed-105521202023-10-06 Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase Bozkurt, Eray Ulaş Çağıl, İrem Niran Şahin Kehribar, Ebru Işılak, Musa Efe Şeker, Urartu Özgür Şafak ACS Omega [Image: see text] Protein glycosylation is one of the most crucial and common post-translational modifications. It plays a fate-determining role and can alter many properties of proteins. Here, we engineered a Campylobacter jejuni N-linked glycosylation machinery by overexpressing one of the core glycosylation-related enzymes, PgIB, to increase the glycosylation rate. It has been previously shown that by utilizing N-linked glycosylation, certain recombinant proteins have been furnished with improved features, such as stability and solubility. We utilized N-linked glycosylation using an engineered glycosylation pathway to glycosylate a model enzyme, the alkaline phosphatase (ALP) enzyme in Escherichia coli. We have investigated the effects of glycosylation on enzyme properties. Considering the glycosylation mechanism is highly dependent on accessibility of the glycosylation tag, ALP constructs carrying the glycosylation tag at different locations of the gene have been constructed, and glycosylation rates have been calculated. Our results showed that, upon glycosylation, ALP features in terms of thermostability, proteolytic stability, tolerance to suboptimal pH, and denaturing conditions are dramatically improved. The results indicated that the N-linked glycosylation mechanism can be employed for protein manipulation for industrial applications. American Chemical Society 2023-08-31 /pmc/articles/PMC10552120/ /pubmed/37810695 http://dx.doi.org/10.1021/acsomega.3c04669 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Bozkurt, Eray Ulaş
Çağıl, İrem Niran
Şahin Kehribar, Ebru
Işılak, Musa Efe
Şeker, Urartu Özgür Şafak
Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase
title Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase
title_full Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase
title_fullStr Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase
title_full_unstemmed Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase
title_short Glycosylation Circuit Enables Improved Catalytic Properties for Recombinant Alkaline Phosphatase
title_sort glycosylation circuit enables improved catalytic properties for recombinant alkaline phosphatase
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10552120/
https://www.ncbi.nlm.nih.gov/pubmed/37810695
http://dx.doi.org/10.1021/acsomega.3c04669
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AT isılakmusaefe glycosylationcircuitenablesimprovedcatalyticpropertiesforrecombinantalkalinephosphatase
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