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Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea

We introduce a new family of fungal protease inhibitors with β-trefoil fold from the mushroom Coprinopsis cinerea, named cocaprins, which inhibit both cysteine and aspartic proteases. Two cocaprin-encoding genes are differentially expressed in fungal tissues. One is highly transcribed in vegetative...

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Autores principales: Renko, Miha, Zupan, Tanja, Plaza, David F., Schmieder, Stefanie S., Perišić Nanut, Milica, Kos, Janko, Turk, Dušan, Künzler, Markus, Sabotič, Jerica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104457/
https://www.ncbi.nlm.nih.gov/pubmed/35563308
http://dx.doi.org/10.3390/ijms23094916
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author Renko, Miha
Zupan, Tanja
Plaza, David F.
Schmieder, Stefanie S.
Perišić Nanut, Milica
Kos, Janko
Turk, Dušan
Künzler, Markus
Sabotič, Jerica
author_facet Renko, Miha
Zupan, Tanja
Plaza, David F.
Schmieder, Stefanie S.
Perišić Nanut, Milica
Kos, Janko
Turk, Dušan
Künzler, Markus
Sabotič, Jerica
author_sort Renko, Miha
collection PubMed
description We introduce a new family of fungal protease inhibitors with β-trefoil fold from the mushroom Coprinopsis cinerea, named cocaprins, which inhibit both cysteine and aspartic proteases. Two cocaprin-encoding genes are differentially expressed in fungal tissues. One is highly transcribed in vegetative mycelium and the other in the stipes of mature fruiting bodies. Cocaprins are small proteins (15 kDa) with acidic isoelectric points that form dimers. The three-dimensional structure of cocaprin 1 showed similarity to fungal β-trefoil lectins. Cocaprins inhibit plant C1 family cysteine proteases with K(i) in the micromolar range, but do not inhibit the C13 family protease legumain, which distinguishes them from mycocypins. Cocaprins also inhibit the aspartic protease pepsin with K(i) in the low micromolar range. Mutagenesis revealed that the β2-β3 loop is involved in the inhibition of cysteine proteases and that the inhibitory reactive sites for aspartic and cysteine proteases are located at different positions on the protein. Their biological function is thought to be the regulation of endogenous proteolytic activities or in defense against fungal antagonists. Cocaprins are the first characterized aspartic protease inhibitors with β-trefoil fold from fungi, and demonstrate the incredible plasticity of loop functionalization in fungal proteins with β-trefoil fold.
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spelling pubmed-91044572022-05-14 Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea Renko, Miha Zupan, Tanja Plaza, David F. Schmieder, Stefanie S. Perišić Nanut, Milica Kos, Janko Turk, Dušan Künzler, Markus Sabotič, Jerica Int J Mol Sci Article We introduce a new family of fungal protease inhibitors with β-trefoil fold from the mushroom Coprinopsis cinerea, named cocaprins, which inhibit both cysteine and aspartic proteases. Two cocaprin-encoding genes are differentially expressed in fungal tissues. One is highly transcribed in vegetative mycelium and the other in the stipes of mature fruiting bodies. Cocaprins are small proteins (15 kDa) with acidic isoelectric points that form dimers. The three-dimensional structure of cocaprin 1 showed similarity to fungal β-trefoil lectins. Cocaprins inhibit plant C1 family cysteine proteases with K(i) in the micromolar range, but do not inhibit the C13 family protease legumain, which distinguishes them from mycocypins. Cocaprins also inhibit the aspartic protease pepsin with K(i) in the low micromolar range. Mutagenesis revealed that the β2-β3 loop is involved in the inhibition of cysteine proteases and that the inhibitory reactive sites for aspartic and cysteine proteases are located at different positions on the protein. Their biological function is thought to be the regulation of endogenous proteolytic activities or in defense against fungal antagonists. Cocaprins are the first characterized aspartic protease inhibitors with β-trefoil fold from fungi, and demonstrate the incredible plasticity of loop functionalization in fungal proteins with β-trefoil fold. MDPI 2022-04-28 /pmc/articles/PMC9104457/ /pubmed/35563308 http://dx.doi.org/10.3390/ijms23094916 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
Renko, Miha
Zupan, Tanja
Plaza, David F.
Schmieder, Stefanie S.
Perišić Nanut, Milica
Kos, Janko
Turk, Dušan
Künzler, Markus
Sabotič, Jerica
Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea
title Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea
title_full Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea
title_fullStr Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea
title_full_unstemmed Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea
title_short Cocaprins, β-Trefoil Fold Inhibitors of Cysteine and Aspartic Proteases from Coprinopsis cinerea
title_sort cocaprins, β-trefoil fold inhibitors of cysteine and aspartic proteases from coprinopsis cinerea
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9104457/
https://www.ncbi.nlm.nih.gov/pubmed/35563308
http://dx.doi.org/10.3390/ijms23094916
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