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Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC

The genome of Penicillium chrysogenum Q176 contains a gene coding for the 88-amino-acid (aa)-long glycine- and cysteine-rich P. chrysogenum antifungal protein C (PAFC). After maturation, the secreted antifungal miniprotein (MP) comprises 64 aa and shares 80% aa identity with the bubble protein (BP)...

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Autores principales: Czajlik, András, Holzknecht, Jeanett, Galgóczy, László, Tóth, Liliána, Poór, Péter, Ördög, Attila, Váradi, Györgyi, Kühbacher, Alexander, Borics, Attila, Tóth, Gábor K., Marx, Florentine, Batta, Gyula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7865535/
https://www.ncbi.nlm.nih.gov/pubmed/33504082
http://dx.doi.org/10.3390/ijms22031183
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author Czajlik, András
Holzknecht, Jeanett
Galgóczy, László
Tóth, Liliána
Poór, Péter
Ördög, Attila
Váradi, Györgyi
Kühbacher, Alexander
Borics, Attila
Tóth, Gábor K.
Marx, Florentine
Batta, Gyula
author_facet Czajlik, András
Holzknecht, Jeanett
Galgóczy, László
Tóth, Liliána
Poór, Péter
Ördög, Attila
Váradi, Györgyi
Kühbacher, Alexander
Borics, Attila
Tóth, Gábor K.
Marx, Florentine
Batta, Gyula
author_sort Czajlik, András
collection PubMed
description The genome of Penicillium chrysogenum Q176 contains a gene coding for the 88-amino-acid (aa)-long glycine- and cysteine-rich P. chrysogenum antifungal protein C (PAFC). After maturation, the secreted antifungal miniprotein (MP) comprises 64 aa and shares 80% aa identity with the bubble protein (BP) from Penicillium brevicompactum, which has a published X-ray structure. Our team expressed isotope ((15)N, (13)C)-labeled, recombinant PAFC in high yields, which allowed us to determine the solution structure and molecular dynamics by nuclear magnetic resonance (NMR) experiments. The primary structure of PAFC is dominated by 14 glycines, and therefore, whether the four disulfide bonds can stabilize the fold is challenging. Indeed, unlike the few published solution structures of other antifungal MPs from filamentous ascomycetes, the NMR data indicate that PAFC has shorter secondary structure elements and lacks the typical β-barrel structure, though it has a positively charged cavity and a hydrophobic core around the disulfide bonds. Some parts within the two putative γ-core motifs exhibited enhanced dynamics according to a new disorder index presentation of (15)N-NMR relaxation data. Furthermore, we also provided a more detailed insight into the antifungal spectrum of PAFC, with specific emphasis on fungal plant pathogens. Our results suggest that PAFC could be an effective candidate for the development of new antifungal strategies in agriculture.
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spelling pubmed-78655352021-02-07 Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC Czajlik, András Holzknecht, Jeanett Galgóczy, László Tóth, Liliána Poór, Péter Ördög, Attila Váradi, Györgyi Kühbacher, Alexander Borics, Attila Tóth, Gábor K. Marx, Florentine Batta, Gyula Int J Mol Sci Article The genome of Penicillium chrysogenum Q176 contains a gene coding for the 88-amino-acid (aa)-long glycine- and cysteine-rich P. chrysogenum antifungal protein C (PAFC). After maturation, the secreted antifungal miniprotein (MP) comprises 64 aa and shares 80% aa identity with the bubble protein (BP) from Penicillium brevicompactum, which has a published X-ray structure. Our team expressed isotope ((15)N, (13)C)-labeled, recombinant PAFC in high yields, which allowed us to determine the solution structure and molecular dynamics by nuclear magnetic resonance (NMR) experiments. The primary structure of PAFC is dominated by 14 glycines, and therefore, whether the four disulfide bonds can stabilize the fold is challenging. Indeed, unlike the few published solution structures of other antifungal MPs from filamentous ascomycetes, the NMR data indicate that PAFC has shorter secondary structure elements and lacks the typical β-barrel structure, though it has a positively charged cavity and a hydrophobic core around the disulfide bonds. Some parts within the two putative γ-core motifs exhibited enhanced dynamics according to a new disorder index presentation of (15)N-NMR relaxation data. Furthermore, we also provided a more detailed insight into the antifungal spectrum of PAFC, with specific emphasis on fungal plant pathogens. Our results suggest that PAFC could be an effective candidate for the development of new antifungal strategies in agriculture. MDPI 2021-01-25 /pmc/articles/PMC7865535/ /pubmed/33504082 http://dx.doi.org/10.3390/ijms22031183 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Czajlik, András
Holzknecht, Jeanett
Galgóczy, László
Tóth, Liliána
Poór, Péter
Ördög, Attila
Váradi, Györgyi
Kühbacher, Alexander
Borics, Attila
Tóth, Gábor K.
Marx, Florentine
Batta, Gyula
Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC
title Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC
title_full Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC
title_fullStr Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC
title_full_unstemmed Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC
title_short Solution Structure, Dynamics, and New Antifungal Aspects of the Cysteine-Rich Miniprotein PAFC
title_sort solution structure, dynamics, and new antifungal aspects of the cysteine-rich miniprotein pafc
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7865535/
https://www.ncbi.nlm.nih.gov/pubmed/33504082
http://dx.doi.org/10.3390/ijms22031183
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