Cargando…

The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases

The Kv1.3 channel-acting scorpion toxins usually adopt the conserved anti-parallel β-sheet domain as the binding interface, but it remains challenging to discover some highly selective Kv1.3 channel-acting toxins. In this work, we investigated the pharmacological profile of the Kv1.3 channel-acting...

Descripción completa

Detalles Bibliográficos
Autores principales: Ye, Fang, Hu, Youtian, Yu, Weiwei, Xie, Zili, Hu, Jun, Cao, Zhijian, Li, Wenxin, Wu, Yingliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848641/
https://www.ncbi.nlm.nih.gov/pubmed/27104568
http://dx.doi.org/10.3390/toxins8040115
_version_ 1782429386537959424
author Ye, Fang
Hu, Youtian
Yu, Weiwei
Xie, Zili
Hu, Jun
Cao, Zhijian
Li, Wenxin
Wu, Yingliang
author_facet Ye, Fang
Hu, Youtian
Yu, Weiwei
Xie, Zili
Hu, Jun
Cao, Zhijian
Li, Wenxin
Wu, Yingliang
author_sort Ye, Fang
collection PubMed
description The Kv1.3 channel-acting scorpion toxins usually adopt the conserved anti-parallel β-sheet domain as the binding interface, but it remains challenging to discover some highly selective Kv1.3 channel-acting toxins. In this work, we investigated the pharmacological profile of the Kv1.3 channel-acting BmKTX-D33H, a structural analogue of the BmKTX scorpion toxin. Interestingly, BmKTX-D33H, with its conserved anti-parallel β-sheet domain as a Kv1.3 channel-interacting interface, exhibited more than 1000-fold selectivity towards the Kv1.3 channel as compared to other K(+) channels (including Kv1.1, Kv1.2, Kv1.7, Kv11.1, KCa2.2, KCa2.3, and KCa3.1). As expected, BmKTX-D33H was found to inhibit the cytokine production and proliferation of both Jurkat cells and human T cells in vitro. It also significantly improved the delayed-type hypersensitivity (DTH) responses, an autoreactive T cell-mediated inflammation in rats. Amino acid sequence alignment and structural analysis strongly suggest that the “evolutionary” Gly11 residue of BmKTX-D33H interacts with the turret domain of Kv1 channels; it appears to be a pivotal amino acid residue with regard to the selectivity of BmKTX-D33H towards the Kv1.3 channel (in comparison with the highly homologous scorpion toxins). Together, our data indicate that BmKTX-D33H is a Kv1.3 channel–specific blocker. Finally, the remarkable selectivity of BmKTX-D33H highlights the great potential of evolutionary-guided peptide drug design in future studies.
format Online
Article
Text
id pubmed-4848641
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-48486412016-05-04 The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases Ye, Fang Hu, Youtian Yu, Weiwei Xie, Zili Hu, Jun Cao, Zhijian Li, Wenxin Wu, Yingliang Toxins (Basel) Article The Kv1.3 channel-acting scorpion toxins usually adopt the conserved anti-parallel β-sheet domain as the binding interface, but it remains challenging to discover some highly selective Kv1.3 channel-acting toxins. In this work, we investigated the pharmacological profile of the Kv1.3 channel-acting BmKTX-D33H, a structural analogue of the BmKTX scorpion toxin. Interestingly, BmKTX-D33H, with its conserved anti-parallel β-sheet domain as a Kv1.3 channel-interacting interface, exhibited more than 1000-fold selectivity towards the Kv1.3 channel as compared to other K(+) channels (including Kv1.1, Kv1.2, Kv1.7, Kv11.1, KCa2.2, KCa2.3, and KCa3.1). As expected, BmKTX-D33H was found to inhibit the cytokine production and proliferation of both Jurkat cells and human T cells in vitro. It also significantly improved the delayed-type hypersensitivity (DTH) responses, an autoreactive T cell-mediated inflammation in rats. Amino acid sequence alignment and structural analysis strongly suggest that the “evolutionary” Gly11 residue of BmKTX-D33H interacts with the turret domain of Kv1 channels; it appears to be a pivotal amino acid residue with regard to the selectivity of BmKTX-D33H towards the Kv1.3 channel (in comparison with the highly homologous scorpion toxins). Together, our data indicate that BmKTX-D33H is a Kv1.3 channel–specific blocker. Finally, the remarkable selectivity of BmKTX-D33H highlights the great potential of evolutionary-guided peptide drug design in future studies. MDPI 2016-04-19 /pmc/articles/PMC4848641/ /pubmed/27104568 http://dx.doi.org/10.3390/toxins8040115 Text en © 2016 by the authors; 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ye, Fang
Hu, Youtian
Yu, Weiwei
Xie, Zili
Hu, Jun
Cao, Zhijian
Li, Wenxin
Wu, Yingliang
The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases
title The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases
title_full The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases
title_fullStr The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases
title_full_unstemmed The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases
title_short The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases
title_sort scorpion toxin analogue bmktx-d33h as a potential kv1.3 channel-selective immunomodulator for autoimmune diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4848641/
https://www.ncbi.nlm.nih.gov/pubmed/27104568
http://dx.doi.org/10.3390/toxins8040115
work_keys_str_mv AT yefang thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT huyoutian thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT yuweiwei thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT xiezili thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT hujun thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT caozhijian thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT liwenxin thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT wuyingliang thescorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT yefang scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT huyoutian scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT yuweiwei scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT xiezili scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT hujun scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT caozhijian scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT liwenxin scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases
AT wuyingliang scorpiontoxinanaloguebmktxd33hasapotentialkv13channelselectiveimmunomodulatorforautoimmunediseases