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WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency

Kunitz-type proteins or peptides have been found in many blood-sucking animals, but the identity of them in leeches remained elusive. In the present study, five Kunitz-type peptides named WPK1-WPK5 were identified from the leech Whitmania pigra. Recombinant WPK1-WPK5 were expressed in Pichia pastori...

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Detalles Bibliográficos
Autores principales: Zheng, Yi-Zheng, Ji, Xiao-Ru, Liu, Yun-Yang, Jiang, Shuai, Yu, Xiang-Ying, Jia, Zhi-Ping, Zhao, Yue, Zhang, Jun-Qiao, Zhang, Jia-Li, Kong, Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8698482/
https://www.ncbi.nlm.nih.gov/pubmed/34944561
http://dx.doi.org/10.3390/biomedicines9121745
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author Zheng, Yi-Zheng
Ji, Xiao-Ru
Liu, Yun-Yang
Jiang, Shuai
Yu, Xiang-Ying
Jia, Zhi-Ping
Zhao, Yue
Zhang, Jun-Qiao
Zhang, Jia-Li
Kong, Yi
author_facet Zheng, Yi-Zheng
Ji, Xiao-Ru
Liu, Yun-Yang
Jiang, Shuai
Yu, Xiang-Ying
Jia, Zhi-Ping
Zhao, Yue
Zhang, Jun-Qiao
Zhang, Jia-Li
Kong, Yi
author_sort Zheng, Yi-Zheng
collection PubMed
description Kunitz-type proteins or peptides have been found in many blood-sucking animals, but the identity of them in leeches remained elusive. In the present study, five Kunitz-type peptides named WPK1-WPK5 were identified from the leech Whitmania pigra. Recombinant WPK1-WPK5 were expressed in Pichia pastoris GS115, and their inhibitory activity against Factor XIa (FXIa) was tested. WPK5 showed inhibitory activity against FXIa with an IC(50) value of 978.20 nM. To improve its potency, the loop replacement strategy was used. The loop 1 (TGPCRSNLER) and loop 2 (QYGGC) in WPK5 were replaced by loop 1 (TGPCRAMISR) and loop 2 (FYGGC) in PN2KPI, respectively, and the resulting peptide named WPK5-Mut showed an IC(50) value of 8.34 nM to FXIa, which is about 100-fold the potency of FXIa compared to that of WPK5. WPK5-Mut was further evaluated for its extensive bioactivity in vitro and in vivo. It dose-dependently prolonged APTT on both murine plasma and human plasma, and potently inhibited FeCl(3)-induced carotid artery thrombosis in mice at a dose of 1.5 mg/kg. Additionally, WPK5-Mut did not show significant bleeding risk at a dose of 6 mg/kg. Together, these results showed that WPK5-Mut is a promising candidate for the development of an antithrombotic drug.
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spelling pubmed-86984822021-12-24 WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency Zheng, Yi-Zheng Ji, Xiao-Ru Liu, Yun-Yang Jiang, Shuai Yu, Xiang-Ying Jia, Zhi-Ping Zhao, Yue Zhang, Jun-Qiao Zhang, Jia-Li Kong, Yi Biomedicines Article Kunitz-type proteins or peptides have been found in many blood-sucking animals, but the identity of them in leeches remained elusive. In the present study, five Kunitz-type peptides named WPK1-WPK5 were identified from the leech Whitmania pigra. Recombinant WPK1-WPK5 were expressed in Pichia pastoris GS115, and their inhibitory activity against Factor XIa (FXIa) was tested. WPK5 showed inhibitory activity against FXIa with an IC(50) value of 978.20 nM. To improve its potency, the loop replacement strategy was used. The loop 1 (TGPCRSNLER) and loop 2 (QYGGC) in WPK5 were replaced by loop 1 (TGPCRAMISR) and loop 2 (FYGGC) in PN2KPI, respectively, and the resulting peptide named WPK5-Mut showed an IC(50) value of 8.34 nM to FXIa, which is about 100-fold the potency of FXIa compared to that of WPK5. WPK5-Mut was further evaluated for its extensive bioactivity in vitro and in vivo. It dose-dependently prolonged APTT on both murine plasma and human plasma, and potently inhibited FeCl(3)-induced carotid artery thrombosis in mice at a dose of 1.5 mg/kg. Additionally, WPK5-Mut did not show significant bleeding risk at a dose of 6 mg/kg. Together, these results showed that WPK5-Mut is a promising candidate for the development of an antithrombotic drug. MDPI 2021-11-23 /pmc/articles/PMC8698482/ /pubmed/34944561 http://dx.doi.org/10.3390/biomedicines9121745 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
Zheng, Yi-Zheng
Ji, Xiao-Ru
Liu, Yun-Yang
Jiang, Shuai
Yu, Xiang-Ying
Jia, Zhi-Ping
Zhao, Yue
Zhang, Jun-Qiao
Zhang, Jia-Li
Kong, Yi
WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency
title WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency
title_full WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency
title_fullStr WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency
title_full_unstemmed WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency
title_short WPK5, a Novel Kunitz-Type Peptide from the Leech Whitmania pigra Inhibiting Factor XIa, and Its Loop-Replaced Mutant to Improve Potency
title_sort wpk5, a novel kunitz-type peptide from the leech whitmania pigra inhibiting factor xia, and its loop-replaced mutant to improve potency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8698482/
https://www.ncbi.nlm.nih.gov/pubmed/34944561
http://dx.doi.org/10.3390/biomedicines9121745
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