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SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom

BACKGROUND: Kunitz-type venom peptides have been isolated from a wide variety of venomous animals. They usually have protease inhibitory activity or potassium channel blocking activity, which by virtue of the effects on predator animals are essential for the survival of venomous animals. However, no...

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Autores principales: Zhao, Ruiming, Dai, Hui, Qiu, Su, Li, Tian, He, Yawen, Ma, Yibao, Chen, Zongyun, Wu, Yingliang, Li, Wenxin, Cao, Zhijian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3210814/
https://www.ncbi.nlm.nih.gov/pubmed/22087336
http://dx.doi.org/10.1371/journal.pone.0027548
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author Zhao, Ruiming
Dai, Hui
Qiu, Su
Li, Tian
He, Yawen
Ma, Yibao
Chen, Zongyun
Wu, Yingliang
Li, Wenxin
Cao, Zhijian
author_facet Zhao, Ruiming
Dai, Hui
Qiu, Su
Li, Tian
He, Yawen
Ma, Yibao
Chen, Zongyun
Wu, Yingliang
Li, Wenxin
Cao, Zhijian
author_sort Zhao, Ruiming
collection PubMed
description BACKGROUND: Kunitz-type venom peptides have been isolated from a wide variety of venomous animals. They usually have protease inhibitory activity or potassium channel blocking activity, which by virtue of the effects on predator animals are essential for the survival of venomous animals. However, no Kunitz-type peptides from scorpion venom have been functionally characterized. PRINCIPAL FINDINGS: A new Kunitz-type venom peptide gene precursor, SdPI, was cloned and characterized from a venom gland cDNA library of the scorpion Lychas mucronatus. It codes for a signal peptide of 21 residues and a mature peptide of 59 residues. The mature SdPI peptide possesses a unique cysteine framework reticulated by three disulfide bridges, different from all reported Kunitz-type proteins. The recombinant SdPI peptide was functionally expressed. It showed trypsin inhibitory activity with high potency (K(i) = 1.6×10(−7) M) and thermostability. CONCLUSIONS: The results illustrated that SdPI is a potent and stable serine protease inhibitor. Further mutagenesis and molecular dynamics simulation revealed that SdPI possesses a serine protease inhibitory active site similar to other Kunitz-type venom peptides. To our knowledge, SdPI is the first functionally characterized Kunitz-type trypsin inhibitor derived from scorpion venom, and it represents a new class of Kunitz-type venom peptides.
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spelling pubmed-32108142011-11-15 SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom Zhao, Ruiming Dai, Hui Qiu, Su Li, Tian He, Yawen Ma, Yibao Chen, Zongyun Wu, Yingliang Li, Wenxin Cao, Zhijian PLoS One Research Article BACKGROUND: Kunitz-type venom peptides have been isolated from a wide variety of venomous animals. They usually have protease inhibitory activity or potassium channel blocking activity, which by virtue of the effects on predator animals are essential for the survival of venomous animals. However, no Kunitz-type peptides from scorpion venom have been functionally characterized. PRINCIPAL FINDINGS: A new Kunitz-type venom peptide gene precursor, SdPI, was cloned and characterized from a venom gland cDNA library of the scorpion Lychas mucronatus. It codes for a signal peptide of 21 residues and a mature peptide of 59 residues. The mature SdPI peptide possesses a unique cysteine framework reticulated by three disulfide bridges, different from all reported Kunitz-type proteins. The recombinant SdPI peptide was functionally expressed. It showed trypsin inhibitory activity with high potency (K(i) = 1.6×10(−7) M) and thermostability. CONCLUSIONS: The results illustrated that SdPI is a potent and stable serine protease inhibitor. Further mutagenesis and molecular dynamics simulation revealed that SdPI possesses a serine protease inhibitory active site similar to other Kunitz-type venom peptides. To our knowledge, SdPI is the first functionally characterized Kunitz-type trypsin inhibitor derived from scorpion venom, and it represents a new class of Kunitz-type venom peptides. Public Library of Science 2011-11-08 /pmc/articles/PMC3210814/ /pubmed/22087336 http://dx.doi.org/10.1371/journal.pone.0027548 Text en Zhao et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhao, Ruiming
Dai, Hui
Qiu, Su
Li, Tian
He, Yawen
Ma, Yibao
Chen, Zongyun
Wu, Yingliang
Li, Wenxin
Cao, Zhijian
SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom
title SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom
title_full SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom
title_fullStr SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom
title_full_unstemmed SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom
title_short SdPI, The First Functionally Characterized Kunitz-Type Trypsin Inhibitor from Scorpion Venom
title_sort sdpi, the first functionally characterized kunitz-type trypsin inhibitor from scorpion venom
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3210814/
https://www.ncbi.nlm.nih.gov/pubmed/22087336
http://dx.doi.org/10.1371/journal.pone.0027548
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