Cargando…

A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity

ω-Conotoxins inhibit N-type voltage-gated calcium (Ca(V)2.2) channels and exhibit efficacy in attenuating neuropathic pain but have a low therapeutic index. Here, we synthesized and characterized a novel ω-conotoxin, Bu8 from Conus bullatus, which consists of 25 amino acid residues and three disulfi...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Jinqin, Liu, Xinhong, Yu, Shuo, Liu, Jia, Chen, Rongfang, Zhang, Yunxiao, Jiang, Ling, Dai, Qiuyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8463271/
https://www.ncbi.nlm.nih.gov/pubmed/34589389
http://dx.doi.org/10.1016/j.apsb.2021.03.001
_version_ 1784572366289895424
author Chen, Jinqin
Liu, Xinhong
Yu, Shuo
Liu, Jia
Chen, Rongfang
Zhang, Yunxiao
Jiang, Ling
Dai, Qiuyun
author_facet Chen, Jinqin
Liu, Xinhong
Yu, Shuo
Liu, Jia
Chen, Rongfang
Zhang, Yunxiao
Jiang, Ling
Dai, Qiuyun
author_sort Chen, Jinqin
collection PubMed
description ω-Conotoxins inhibit N-type voltage-gated calcium (Ca(V)2.2) channels and exhibit efficacy in attenuating neuropathic pain but have a low therapeutic index. Here, we synthesized and characterized a novel ω-conotoxin, Bu8 from Conus bullatus, which consists of 25 amino acid residues and three disulfide bridges. Bu8 selectively and potently inhibits depolarization-activated Ba(2+) currents mediated by rat Ca(V)2.2 expressed in HEK293T cells (IC(50) = 89 nmol/L). Bu8 is two-fold more potent than ω-conotoxin MVIIA, a ω-conotoxin currently used for the treatment of severe chronic pain. It also displays potent analgesic activity in animal pain models of hot plate and acetic acid writhing but has fewer side effects on mouse motor function and lower toxicity in goldfish. Its lower side effects may be attributed to its faster binding rate and higher recovery ratios. The NMR structure demonstrates that Bu8 contains a small irregular triple β-strand. The structure–activity relationships of Bu8 Ala mutants and Bu8/MVIIA hybrid mutants demonstrate that the binding mode of Ca(V)2.2 with the amino acid residues in loop 1 and loop 2 of Bu8 is different from that of MVIIA. This study characterizes a novel, more potent ω-conotoxin and provides new insights for designing Ca(V)2.2 antagonists.
format Online
Article
Text
id pubmed-8463271
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-84632712021-09-28 A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity Chen, Jinqin Liu, Xinhong Yu, Shuo Liu, Jia Chen, Rongfang Zhang, Yunxiao Jiang, Ling Dai, Qiuyun Acta Pharm Sin B Original Article ω-Conotoxins inhibit N-type voltage-gated calcium (Ca(V)2.2) channels and exhibit efficacy in attenuating neuropathic pain but have a low therapeutic index. Here, we synthesized and characterized a novel ω-conotoxin, Bu8 from Conus bullatus, which consists of 25 amino acid residues and three disulfide bridges. Bu8 selectively and potently inhibits depolarization-activated Ba(2+) currents mediated by rat Ca(V)2.2 expressed in HEK293T cells (IC(50) = 89 nmol/L). Bu8 is two-fold more potent than ω-conotoxin MVIIA, a ω-conotoxin currently used for the treatment of severe chronic pain. It also displays potent analgesic activity in animal pain models of hot plate and acetic acid writhing but has fewer side effects on mouse motor function and lower toxicity in goldfish. Its lower side effects may be attributed to its faster binding rate and higher recovery ratios. The NMR structure demonstrates that Bu8 contains a small irregular triple β-strand. The structure–activity relationships of Bu8 Ala mutants and Bu8/MVIIA hybrid mutants demonstrate that the binding mode of Ca(V)2.2 with the amino acid residues in loop 1 and loop 2 of Bu8 is different from that of MVIIA. This study characterizes a novel, more potent ω-conotoxin and provides new insights for designing Ca(V)2.2 antagonists. Elsevier 2021-09 2021-03-18 /pmc/articles/PMC8463271/ /pubmed/34589389 http://dx.doi.org/10.1016/j.apsb.2021.03.001 Text en © 2021 Chinese Pharmaceutical Association and Institute of Materia Medica, Chinese Academy of Medical Sciences. Production and hosting by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Chen, Jinqin
Liu, Xinhong
Yu, Shuo
Liu, Jia
Chen, Rongfang
Zhang, Yunxiao
Jiang, Ling
Dai, Qiuyun
A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity
title A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity
title_full A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity
title_fullStr A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity
title_full_unstemmed A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity
title_short A novel ω-conotoxin Bu8 inhibiting N-type voltage-gated calcium channels displays potent analgesic activity
title_sort novel ω-conotoxin bu8 inhibiting n-type voltage-gated calcium channels displays potent analgesic activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8463271/
https://www.ncbi.nlm.nih.gov/pubmed/34589389
http://dx.doi.org/10.1016/j.apsb.2021.03.001
work_keys_str_mv AT chenjinqin anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT liuxinhong anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT yushuo anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT liujia anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT chenrongfang anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT zhangyunxiao anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT jiangling anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT daiqiuyun anovelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT chenjinqin novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT liuxinhong novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT yushuo novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT liujia novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT chenrongfang novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT zhangyunxiao novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT jiangling novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity
AT daiqiuyun novelōconotoxinbu8inhibitingntypevoltagegatedcalciumchannelsdisplayspotentanalgesicactivity