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Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides

[Image: see text] Plant peptide protease inhibitors are important molecules in seed storage metabolism and to fight insect pests. Commonly they contain multiple disulfide bonds and are exceptionally stable molecules. In this study, a novel peptide protease inhibitor from beetroot (Beta vulgaris) ter...

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Autores principales: Retzl, Bernhard, Hellinger, Roland, Muratspahić, Edin, Pinto, Meri E. F., Bolzani, Vanderlan S., Gruber, Christian W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society and American Society of Pharmacognosy 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7705960/
https://www.ncbi.nlm.nih.gov/pubmed/33118348
http://dx.doi.org/10.1021/acs.jnatprod.0c00648
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author Retzl, Bernhard
Hellinger, Roland
Muratspahić, Edin
Pinto, Meri E. F.
Bolzani, Vanderlan S.
Gruber, Christian W.
author_facet Retzl, Bernhard
Hellinger, Roland
Muratspahić, Edin
Pinto, Meri E. F.
Bolzani, Vanderlan S.
Gruber, Christian W.
author_sort Retzl, Bernhard
collection PubMed
description [Image: see text] Plant peptide protease inhibitors are important molecules in seed storage metabolism and to fight insect pests. Commonly they contain multiple disulfide bonds and are exceptionally stable molecules. In this study, a novel peptide protease inhibitor from beetroot (Beta vulgaris) termed bevuTI-I was isolated, and its primary structure was determined via mass spectrometry-based amino acid sequencing. By sequence homology analysis a few peptides with high similarity to bevuTI-I, also known as the Mirabilis jalapa trypsin inhibitor subfamily of knottin-type protease inhibitors, were discovered. Hence, we assessed bevuTI-I for inhibitory activity toward trypsin (IC(50) = 471 nM) and human prolyl oligopeptidase (IC(50) = 11 μM), which is an emerging drug target for neurodegenerative and inflammatory disorders. Interestingly, using a customized bioinformatics approach, bevuTI-I was found to be the missing link to annotate 243 novel sequences of M. jalapa trypsin inhibitor-like peptides. According to their phylogenetic distribution they appear to be common in several plant families. Therefore, the presented approach and our results may help to discover and classify other plant-derived cystine knot peptides, a class of plant molecules that play important functions in plant physiology and are currently being explored as lead molecules and scaffolds in drug development.
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spelling pubmed-77059602020-12-02 Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides Retzl, Bernhard Hellinger, Roland Muratspahić, Edin Pinto, Meri E. F. Bolzani, Vanderlan S. Gruber, Christian W. J Nat Prod [Image: see text] Plant peptide protease inhibitors are important molecules in seed storage metabolism and to fight insect pests. Commonly they contain multiple disulfide bonds and are exceptionally stable molecules. In this study, a novel peptide protease inhibitor from beetroot (Beta vulgaris) termed bevuTI-I was isolated, and its primary structure was determined via mass spectrometry-based amino acid sequencing. By sequence homology analysis a few peptides with high similarity to bevuTI-I, also known as the Mirabilis jalapa trypsin inhibitor subfamily of knottin-type protease inhibitors, were discovered. Hence, we assessed bevuTI-I for inhibitory activity toward trypsin (IC(50) = 471 nM) and human prolyl oligopeptidase (IC(50) = 11 μM), which is an emerging drug target for neurodegenerative and inflammatory disorders. Interestingly, using a customized bioinformatics approach, bevuTI-I was found to be the missing link to annotate 243 novel sequences of M. jalapa trypsin inhibitor-like peptides. According to their phylogenetic distribution they appear to be common in several plant families. Therefore, the presented approach and our results may help to discover and classify other plant-derived cystine knot peptides, a class of plant molecules that play important functions in plant physiology and are currently being explored as lead molecules and scaffolds in drug development. American Chemical Society and American Society of Pharmacognosy 2020-10-29 2020-11-25 /pmc/articles/PMC7705960/ /pubmed/33118348 http://dx.doi.org/10.1021/acs.jnatprod.0c00648 Text en © 2020 American Chemical Society and American Society of Pharmacognosy This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Retzl, Bernhard
Hellinger, Roland
Muratspahić, Edin
Pinto, Meri E. F.
Bolzani, Vanderlan S.
Gruber, Christian W.
Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides
title Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides
title_full Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides
title_fullStr Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides
title_full_unstemmed Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides
title_short Discovery of a Beetroot Protease Inhibitor to Identify and Classify Plant-Derived Cystine Knot Peptides
title_sort discovery of a beetroot protease inhibitor to identify and classify plant-derived cystine knot peptides
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7705960/
https://www.ncbi.nlm.nih.gov/pubmed/33118348
http://dx.doi.org/10.1021/acs.jnatprod.0c00648
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