Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin

Stenodactylin is one of the most potent type 2 ribosome-inactivating proteins (RIPs); its high toxicity has been demonstrated in several models both in vitro and in vivo. Due to its peculiarities, stenodactylin could have several medical and biotechnological applications in neuroscience and cancer t...

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Main Authors: Rosario Iglesias, Letizia Polito, Massimo Bortolotti, Manuela Pedrazzi, Lucía Citores, José M. Ferreras, Andrea Bolognesi
Format: Article
Language:English
Published: MDPI AG 2020-08-01
Series:Toxins
Subjects:
Online Access:https://www.mdpi.com/2072-6651/12/9/538
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spelling doaj-7791346afca84e3f9c37b7eb30422c152020-11-25T03:55:12ZengMDPI AGToxins2072-66512020-08-011253853810.3390/toxins12090538Primary Sequence and 3D Structure Prediction of the Plant Toxin StenodactylinRosario Iglesias0Letizia Polito1Massimo Bortolotti2Manuela Pedrazzi3Lucía Citores4José M. Ferreras5Andrea Bolognesi6Department of Biochemistry and Molecular Biology and Physiology, Faculty of Sciences, University of Valladolid, E−47011 Valladolid, SpainDepartment of Experimental, Diagnostic and Specialty Medicine—DIMES, General Pathology Section, Alma Mater Studiorum—University of Bologna, Via S. Giacomo 14, 40126 Bologna, ItalyDepartment of Experimental, Diagnostic and Specialty Medicine—DIMES, General Pathology Section, Alma Mater Studiorum—University of Bologna, Via S. Giacomo 14, 40126 Bologna, ItalyDepartment of Experimental, Diagnostic and Specialty Medicine—DIMES, General Pathology Section, Alma Mater Studiorum—University of Bologna, Via S. Giacomo 14, 40126 Bologna, ItalyDepartment of Biochemistry and Molecular Biology and Physiology, Faculty of Sciences, University of Valladolid, E−47011 Valladolid, SpainDepartment of Biochemistry and Molecular Biology and Physiology, Faculty of Sciences, University of Valladolid, E−47011 Valladolid, SpainDepartment of Experimental, Diagnostic and Specialty Medicine—DIMES, General Pathology Section, Alma Mater Studiorum—University of Bologna, Via S. Giacomo 14, 40126 Bologna, ItalyStenodactylin is one of the most potent type 2 ribosome-inactivating proteins (RIPs); its high toxicity has been demonstrated in several models both in vitro and in vivo. Due to its peculiarities, stenodactylin could have several medical and biotechnological applications in neuroscience and cancer treatment. In this work, we report the complete amino acid sequence of stenodactylin and 3D structure prediction. The comparison between the primary sequence of stenodactylin and other RIPs allowed us to identify homologies/differences and the amino acids involved in RIP toxic activity. Stenodactylin RNA was isolated from plant caudex, reverse transcribed through PCR and the cDNA was amplificated and cloned into a plasmid vector and further analyzed by sequencing. Nucleotide sequence analysis showed that stenodactylin A and B chains contain 251 and 258 amino acids, respectively. The key amino acids of the active site described for ricin and most other RIPs are also conserved in the stenodactylin A chain. Stenodactylin amino acid sequence shows a high identity degree with volkensin (81.7% for A chain, 90.3% for B chain), whilst when compared with other type 2 RIPs the identity degree ranges from 27.7 to 33.0% for the A chain and from 42.1 to 47.7% for the B chain.https://www.mdpi.com/2072-6651/12/9/5383D structureplant toxinprimary sequenceribosome-inactivating proteinstenodactylintoxic lectin
collection DOAJ
language English
format Article
sources DOAJ
author Rosario Iglesias
Letizia Polito
Massimo Bortolotti
Manuela Pedrazzi
Lucía Citores
José M. Ferreras
Andrea Bolognesi
spellingShingle Rosario Iglesias
Letizia Polito
Massimo Bortolotti
Manuela Pedrazzi
Lucía Citores
José M. Ferreras
Andrea Bolognesi
Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin
Toxins
3D structure
plant toxin
primary sequence
ribosome-inactivating protein
stenodactylin
toxic lectin
author_facet Rosario Iglesias
Letizia Polito
Massimo Bortolotti
Manuela Pedrazzi
Lucía Citores
José M. Ferreras
Andrea Bolognesi
author_sort Rosario Iglesias
title Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin
title_short Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin
title_full Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin
title_fullStr Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin
title_full_unstemmed Primary Sequence and 3D Structure Prediction of the Plant Toxin Stenodactylin
title_sort primary sequence and 3d structure prediction of the plant toxin stenodactylin
publisher MDPI AG
series Toxins
issn 2072-6651
publishDate 2020-08-01
description Stenodactylin is one of the most potent type 2 ribosome-inactivating proteins (RIPs); its high toxicity has been demonstrated in several models both in vitro and in vivo. Due to its peculiarities, stenodactylin could have several medical and biotechnological applications in neuroscience and cancer treatment. In this work, we report the complete amino acid sequence of stenodactylin and 3D structure prediction. The comparison between the primary sequence of stenodactylin and other RIPs allowed us to identify homologies/differences and the amino acids involved in RIP toxic activity. Stenodactylin RNA was isolated from plant caudex, reverse transcribed through PCR and the cDNA was amplificated and cloned into a plasmid vector and further analyzed by sequencing. Nucleotide sequence analysis showed that stenodactylin A and B chains contain 251 and 258 amino acids, respectively. The key amino acids of the active site described for ricin and most other RIPs are also conserved in the stenodactylin A chain. Stenodactylin amino acid sequence shows a high identity degree with volkensin (81.7% for A chain, 90.3% for B chain), whilst when compared with other type 2 RIPs the identity degree ranges from 27.7 to 33.0% for the A chain and from 42.1 to 47.7% for the B chain.
topic 3D structure
plant toxin
primary sequence
ribosome-inactivating protein
stenodactylin
toxic lectin
url https://www.mdpi.com/2072-6651/12/9/538
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