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Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis

The Sphenophorus levis (Coleoptera, Curculionidae) is one of the main pests of sugarcane in Brazil. Although its major digestive proteases are known, its complex digestive process still needs to be further understood. We constructed a transcriptome from the midgut of 30-day-old larvae and identified...

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Autores principales: Shibao, Priscila Yumi Tanaka, Ferro, Milene, de Paula, Fernando Fonseca Pereira, Lima, Bruno Salata, Henrique-Silva, Flávio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583781/
https://www.ncbi.nlm.nih.gov/pubmed/34768909
http://dx.doi.org/10.3390/ijms222111476
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author Shibao, Priscila Yumi Tanaka
Ferro, Milene
de Paula, Fernando Fonseca Pereira
Lima, Bruno Salata
Henrique-Silva, Flávio
author_facet Shibao, Priscila Yumi Tanaka
Ferro, Milene
de Paula, Fernando Fonseca Pereira
Lima, Bruno Salata
Henrique-Silva, Flávio
author_sort Shibao, Priscila Yumi Tanaka
collection PubMed
description The Sphenophorus levis (Coleoptera, Curculionidae) is one of the main pests of sugarcane in Brazil. Although its major digestive proteases are known, its complex digestive process still needs to be further understood. We constructed a transcriptome from the midgut of 30-day-old larvae and identified sequences similar to its major digestive protease (cysteine cathepsin Sl-CathL), however, they presented a different amino acid than cysteine in the active cleft. We identified, recombinantly produced, and characterized Sl-CathL-CS, a pseudo cysteine protease, and verified that higher gene expression levels of Sl-CathL-CS occur in the midgut of 30-day old larvae. We reverted the serine residue to cysteine and compared the activity of the mutant (Sl-CathL-mutSC) with Sl-CathL-CS. Sl-CathL-CS presented no protease activity, but Sl-CathL-mutSC hydrolyzed Z-Phe-Arg-AMC (V(max) = 1017.60 ± 135.55, K(m) = 10.77 mM) and was inhibited by a cysteine protease inhibitor E-64 (K(i) = 38.52 ± 1.20 μM), but not by the serine protease inhibitor PMSF. Additionally, Sl-CathL-CS interacted with a sugarcane cystatin, while Sl-CathL-mutSC presented weaker interaction. Finally, protein ligand docking reinforced the differences in the catalytic sites of native and mutant proteins. These results indicate that Sl-CathL-CS is a pseudo-cysteine protease that assists protein digestion possibly by interacting with canecystatins, allowing the true proteases to work.
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spelling pubmed-85837812021-11-12 Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis Shibao, Priscila Yumi Tanaka Ferro, Milene de Paula, Fernando Fonseca Pereira Lima, Bruno Salata Henrique-Silva, Flávio Int J Mol Sci Article The Sphenophorus levis (Coleoptera, Curculionidae) is one of the main pests of sugarcane in Brazil. Although its major digestive proteases are known, its complex digestive process still needs to be further understood. We constructed a transcriptome from the midgut of 30-day-old larvae and identified sequences similar to its major digestive protease (cysteine cathepsin Sl-CathL), however, they presented a different amino acid than cysteine in the active cleft. We identified, recombinantly produced, and characterized Sl-CathL-CS, a pseudo cysteine protease, and verified that higher gene expression levels of Sl-CathL-CS occur in the midgut of 30-day old larvae. We reverted the serine residue to cysteine and compared the activity of the mutant (Sl-CathL-mutSC) with Sl-CathL-CS. Sl-CathL-CS presented no protease activity, but Sl-CathL-mutSC hydrolyzed Z-Phe-Arg-AMC (V(max) = 1017.60 ± 135.55, K(m) = 10.77 mM) and was inhibited by a cysteine protease inhibitor E-64 (K(i) = 38.52 ± 1.20 μM), but not by the serine protease inhibitor PMSF. Additionally, Sl-CathL-CS interacted with a sugarcane cystatin, while Sl-CathL-mutSC presented weaker interaction. Finally, protein ligand docking reinforced the differences in the catalytic sites of native and mutant proteins. These results indicate that Sl-CathL-CS is a pseudo-cysteine protease that assists protein digestion possibly by interacting with canecystatins, allowing the true proteases to work. MDPI 2021-10-25 /pmc/articles/PMC8583781/ /pubmed/34768909 http://dx.doi.org/10.3390/ijms222111476 Text en © 2021 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
Shibao, Priscila Yumi Tanaka
Ferro, Milene
de Paula, Fernando Fonseca Pereira
Lima, Bruno Salata
Henrique-Silva, Flávio
Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis
title Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis
title_full Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis
title_fullStr Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis
title_full_unstemmed Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis
title_short Identification and Functional Analysis of a Pseudo-Cysteine Protease from the Midgut Transcriptome of Sphenophorus levis
title_sort identification and functional analysis of a pseudo-cysteine protease from the midgut transcriptome of sphenophorus levis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8583781/
https://www.ncbi.nlm.nih.gov/pubmed/34768909
http://dx.doi.org/10.3390/ijms222111476
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