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Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)

Glycosylation is an important post-translational modification of proteins, contributing to protein function, stability and subcellular localization. Fungal immunomodulatory proteins (FIPs) are a group of small proteins with notable immunomodulatory activity, some of which are glycoproteins. In this...

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Autores principales: Liu, Yusi, Hoppenbrouwers, Tamara, Wang, Yulu, Xie, Yingying, Wei, Xue, Zhang, Haowen, Du, Guoming, Imam, Khandader Md Sharif Uddin, Wichers, Harry, Li, Zhen, Bastiaan-Net, Shanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10490071/
https://www.ncbi.nlm.nih.gov/pubmed/37687215
http://dx.doi.org/10.3390/molecules28176386
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author Liu, Yusi
Hoppenbrouwers, Tamara
Wang, Yulu
Xie, Yingying
Wei, Xue
Zhang, Haowen
Du, Guoming
Imam, Khandader Md Sharif Uddin
Wichers, Harry
Li, Zhen
Bastiaan-Net, Shanna
author_facet Liu, Yusi
Hoppenbrouwers, Tamara
Wang, Yulu
Xie, Yingying
Wei, Xue
Zhang, Haowen
Du, Guoming
Imam, Khandader Md Sharif Uddin
Wichers, Harry
Li, Zhen
Bastiaan-Net, Shanna
author_sort Liu, Yusi
collection PubMed
description Glycosylation is an important post-translational modification of proteins, contributing to protein function, stability and subcellular localization. Fungal immunomodulatory proteins (FIPs) are a group of small proteins with notable immunomodulatory activity, some of which are glycoproteins. In this study, the impact of glycosylation on the bioactivity and biochemical characteristics of FIP-nha (from Nectria haematococca) is described. Three rFIP-nha glycan mutants (N5A, N39A, N5+39A) were constructed and expressed in Pichia pastoris to study the functionality of the specific N-glycosylation on amino acid N5 and N39. Their protein characteristics, structure, stability and activity were tested. WT and mutants all formed tetramers, with no obvious difference in crystal structures. Their melting temperatures were 82.2 °C (WT), 81.4 °C (N5A), 80.7 °C (N39A) and 80.1 °C (N5+39A), indicating that glycosylation improves thermostability of rFIP-nha. Digestion assays showed that glycosylation on either site improved pepsin resistance, while 39N-glycosylation was important for trypsin resistance. Based on the 3D structure and analysis of enzyme cleavage sites, we conclude that glycosylation might interfere with hydrolysis via increasing steric hindrance. WT and mutants exerted similar bioactivity on tumor cell metabolism and red blood cells hemagglutination. Taken together, these findings indicate that glycosylation of FIP-nha impacts its thermostability and digestion resistance.
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spelling pubmed-104900712023-09-09 Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca) Liu, Yusi Hoppenbrouwers, Tamara Wang, Yulu Xie, Yingying Wei, Xue Zhang, Haowen Du, Guoming Imam, Khandader Md Sharif Uddin Wichers, Harry Li, Zhen Bastiaan-Net, Shanna Molecules Article Glycosylation is an important post-translational modification of proteins, contributing to protein function, stability and subcellular localization. Fungal immunomodulatory proteins (FIPs) are a group of small proteins with notable immunomodulatory activity, some of which are glycoproteins. In this study, the impact of glycosylation on the bioactivity and biochemical characteristics of FIP-nha (from Nectria haematococca) is described. Three rFIP-nha glycan mutants (N5A, N39A, N5+39A) were constructed and expressed in Pichia pastoris to study the functionality of the specific N-glycosylation on amino acid N5 and N39. Their protein characteristics, structure, stability and activity were tested. WT and mutants all formed tetramers, with no obvious difference in crystal structures. Their melting temperatures were 82.2 °C (WT), 81.4 °C (N5A), 80.7 °C (N39A) and 80.1 °C (N5+39A), indicating that glycosylation improves thermostability of rFIP-nha. Digestion assays showed that glycosylation on either site improved pepsin resistance, while 39N-glycosylation was important for trypsin resistance. Based on the 3D structure and analysis of enzyme cleavage sites, we conclude that glycosylation might interfere with hydrolysis via increasing steric hindrance. WT and mutants exerted similar bioactivity on tumor cell metabolism and red blood cells hemagglutination. Taken together, these findings indicate that glycosylation of FIP-nha impacts its thermostability and digestion resistance. MDPI 2023-08-31 /pmc/articles/PMC10490071/ /pubmed/37687215 http://dx.doi.org/10.3390/molecules28176386 Text en © 2023 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
Liu, Yusi
Hoppenbrouwers, Tamara
Wang, Yulu
Xie, Yingying
Wei, Xue
Zhang, Haowen
Du, Guoming
Imam, Khandader Md Sharif Uddin
Wichers, Harry
Li, Zhen
Bastiaan-Net, Shanna
Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)
title Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)
title_full Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)
title_fullStr Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)
title_full_unstemmed Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)
title_short Glycosylation Contributes to Thermostability and Proteolytic Resistance of rFIP-nha (Nectria haematococca)
title_sort glycosylation contributes to thermostability and proteolytic resistance of rfip-nha (nectria haematococca)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10490071/
https://www.ncbi.nlm.nih.gov/pubmed/37687215
http://dx.doi.org/10.3390/molecules28176386
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