Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition

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Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition. / Kachel, Hamid S; Patel, Rohit N; Franzyk, Henrik; Mellor, Ian R.

In: Scientific Reports, Vol. 6, 38116, 30.11.2016, p. 1-13.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Kachel, HS, Patel, RN, Franzyk, H & Mellor, IR 2016, 'Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition', Scientific Reports, vol. 6, 38116, pp. 1-13. https://doi.org/10.1038/srep38116

APA

Kachel, H. S., Patel, R. N., Franzyk, H., & Mellor, I. R. (2016). Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition. Scientific Reports, 6, 1-13. [38116]. https://doi.org/10.1038/srep38116

Vancouver

Kachel HS, Patel RN, Franzyk H, Mellor IR. Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition. Scientific Reports. 2016 Nov 30;6:1-13. 38116. https://doi.org/10.1038/srep38116

Author

Kachel, Hamid S ; Patel, Rohit N ; Franzyk, Henrik ; Mellor, Ian R. / Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition. In: Scientific Reports. 2016 ; Vol. 6. pp. 1-13.

Bibtex

@article{1943a5fc406a4f1384fd7c59c715de1e,
title = "Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition",
abstract = "Philanthotoxin-433 (PhTX-433) is an active component of the venom from the Egyptian digger wasp, Philanthus triangulum. PhTX-433 inhibits several excitatory ligand-gated ion channels, and to improve selectivity two synthetic analogues, PhTX-343 and PhTX-12, were developed. Previous work showed a 22-fold selectivity of PhTX-12 over PhTX-343 for embryonic muscle-type nicotinic acetylcholine receptors (nAChRs) in TE671 cells. We investigated their inhibition of different neuronal nAChR subunit combinations as well as of embryonic muscle receptors expressed in Xenopus oocytes. Whole-cell currents in response to application of acetylcholine alone or co-applied with PhTX analogue were studied by using two-electrode voltage-clamp. α3β4 nAChRs were most sensitive to PhTX-343 (IC50 = 12 nM at -80 mV) with α4β4, α4β2, α3β2, α7 and α1β1γδ being 5, 26, 114, 422 and 992 times less sensitive. In contrast α1β1γδ was most sensitive to PhTX-12 along with α3β4 (IC50 values of 100 nM) with α4β4, α4β2, α3β2 and α7 being 3, 3, 26 and 49 times less sensitive. PhTX-343 inhibition was strongly voltage-dependent for all subunit combinations except α7, whereas this was not the case for PhTX-12 for which weak voltage dependence was observed. We conclude that PhTX-343 mainly acts as an open-channel blocker of nAChRs with strong subtype selectivity.",
author = "Kachel, {Hamid S} and Patel, {Rohit N} and Henrik Franzyk and Mellor, {Ian R}",
year = "2016",
month = nov,
day = "30",
doi = "10.1038/srep38116",
language = "English",
volume = "6",
pages = "1--13",
journal = "Scientific Reports",
issn = "2045-2322",
publisher = "nature publishing group",

}

RIS

TY - JOUR

T1 - Block of nicotinic acetylcholine receptors by philanthotoxins is strongly dependent on their subunit composition

AU - Kachel, Hamid S

AU - Patel, Rohit N

AU - Franzyk, Henrik

AU - Mellor, Ian R

PY - 2016/11/30

Y1 - 2016/11/30

N2 - Philanthotoxin-433 (PhTX-433) is an active component of the venom from the Egyptian digger wasp, Philanthus triangulum. PhTX-433 inhibits several excitatory ligand-gated ion channels, and to improve selectivity two synthetic analogues, PhTX-343 and PhTX-12, were developed. Previous work showed a 22-fold selectivity of PhTX-12 over PhTX-343 for embryonic muscle-type nicotinic acetylcholine receptors (nAChRs) in TE671 cells. We investigated their inhibition of different neuronal nAChR subunit combinations as well as of embryonic muscle receptors expressed in Xenopus oocytes. Whole-cell currents in response to application of acetylcholine alone or co-applied with PhTX analogue were studied by using two-electrode voltage-clamp. α3β4 nAChRs were most sensitive to PhTX-343 (IC50 = 12 nM at -80 mV) with α4β4, α4β2, α3β2, α7 and α1β1γδ being 5, 26, 114, 422 and 992 times less sensitive. In contrast α1β1γδ was most sensitive to PhTX-12 along with α3β4 (IC50 values of 100 nM) with α4β4, α4β2, α3β2 and α7 being 3, 3, 26 and 49 times less sensitive. PhTX-343 inhibition was strongly voltage-dependent for all subunit combinations except α7, whereas this was not the case for PhTX-12 for which weak voltage dependence was observed. We conclude that PhTX-343 mainly acts as an open-channel blocker of nAChRs with strong subtype selectivity.

AB - Philanthotoxin-433 (PhTX-433) is an active component of the venom from the Egyptian digger wasp, Philanthus triangulum. PhTX-433 inhibits several excitatory ligand-gated ion channels, and to improve selectivity two synthetic analogues, PhTX-343 and PhTX-12, were developed. Previous work showed a 22-fold selectivity of PhTX-12 over PhTX-343 for embryonic muscle-type nicotinic acetylcholine receptors (nAChRs) in TE671 cells. We investigated their inhibition of different neuronal nAChR subunit combinations as well as of embryonic muscle receptors expressed in Xenopus oocytes. Whole-cell currents in response to application of acetylcholine alone or co-applied with PhTX analogue were studied by using two-electrode voltage-clamp. α3β4 nAChRs were most sensitive to PhTX-343 (IC50 = 12 nM at -80 mV) with α4β4, α4β2, α3β2, α7 and α1β1γδ being 5, 26, 114, 422 and 992 times less sensitive. In contrast α1β1γδ was most sensitive to PhTX-12 along with α3β4 (IC50 values of 100 nM) with α4β4, α4β2, α3β2 and α7 being 3, 3, 26 and 49 times less sensitive. PhTX-343 inhibition was strongly voltage-dependent for all subunit combinations except α7, whereas this was not the case for PhTX-12 for which weak voltage dependence was observed. We conclude that PhTX-343 mainly acts as an open-channel blocker of nAChRs with strong subtype selectivity.

U2 - 10.1038/srep38116

DO - 10.1038/srep38116

M3 - Journal article

C2 - 27901080

VL - 6

SP - 1

EP - 13

JO - Scientific Reports

JF - Scientific Reports

SN - 2045-2322

M1 - 38116

ER -

ID: 169616299