Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy

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Standard

Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy. / Martinez, K. L.; Corringer, P. J.; Edelstein, S. J.; Changeux, J. P.; Mérola, F.

I: Biochemistry, Bind 39, Nr. 23, 13.06.2000, s. 6979-6990.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Martinez, KL, Corringer, PJ, Edelstein, SJ, Changeux, JP & Mérola, F 2000, 'Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy', Biochemistry, bind 39, nr. 23, s. 6979-6990. https://doi.org/10.1021/bi992811p

APA

Martinez, K. L., Corringer, P. J., Edelstein, S. J., Changeux, J. P., & Mérola, F. (2000). Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy. Biochemistry, 39(23), 6979-6990. https://doi.org/10.1021/bi992811p

Vancouver

Martinez KL, Corringer PJ, Edelstein SJ, Changeux JP, Mérola F. Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy. Biochemistry. 2000 jun. 13;39(23):6979-6990. https://doi.org/10.1021/bi992811p

Author

Martinez, K. L. ; Corringer, P. J. ; Edelstein, S. J. ; Changeux, J. P. ; Mérola, F. / Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy. I: Biochemistry. 2000 ; Bind 39, Nr. 23. s. 6979-6990.

Bibtex

@article{3616f35825374f02961a732e48ec5236,
title = "Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy",
abstract = "The nicotinic acetylcholine receptor (nAChR) from Torpedo marmorata carries two nonequivalent agonist binding sites at the αδ and αγ subunit interfaces. These sites have been characterized by time-resolved fluorescence with the partial nicotinic agonist dansyl-C6-choline (Dnscho). When bound to the detergent-solubilized receptor, the fluorescence lifetime distribution of Dnscho displays a characteristic signature, with four separable components at 0.2, 1.8, 7.2, and 18.3 ns, respectively. Competition experiments with the antagonist d-tubocurarine (dTC), known to bind preferentially to the αγ site, result in substantial changes of this signature, associated with a strong decrease in average fluorescence lifetime. Comparisons with two other competitive antagonists, α-conotoxin M1 and α-bungarotoxin, demonstrate that Dnscho binds with a similar affinity to the two sites but that the microenvironment of the probe is different for each site. Using a two-site binding model together with published equilibrium constants to describe the competitive binding of dTC and Dnscho, we reach a satisfactory description of the changes in fluorescence lifetimes and propose characteristic fluorescence parameters of the probe bound to each type of site. This analysis indicates that Dnscho at the αδ site is principally associated with a 8.7 ns lifetime, while it has a 20.2 ns major lifetime at the αγ site. Therefore, the observed fluorescence heterogeneity arises in large part from the structural differences of the two binding sites. As a result, this signal can be used to identify the binding preferences of competitive ligands of unknown pharmacology.",
author = "Martinez, {K. L.} and Corringer, {P. J.} and Edelstein, {S. J.} and Changeux, {J. P.} and F. M{\'e}rola",
year = "2000",
month = jun,
day = "13",
doi = "10.1021/bi992811p",
language = "English",
volume = "39",
pages = "6979--6990",
journal = "Biochemistry",
issn = "0006-2960",
publisher = "American Chemical Society",
number = "23",

}

RIS

TY - JOUR

T1 - Structural differences in the two agonist binding sites of the Torpedo nicotinic acetylcholine receptor revealed by time-resolved fluorescence spectroscopy

AU - Martinez, K. L.

AU - Corringer, P. J.

AU - Edelstein, S. J.

AU - Changeux, J. P.

AU - Mérola, F.

PY - 2000/6/13

Y1 - 2000/6/13

N2 - The nicotinic acetylcholine receptor (nAChR) from Torpedo marmorata carries two nonequivalent agonist binding sites at the αδ and αγ subunit interfaces. These sites have been characterized by time-resolved fluorescence with the partial nicotinic agonist dansyl-C6-choline (Dnscho). When bound to the detergent-solubilized receptor, the fluorescence lifetime distribution of Dnscho displays a characteristic signature, with four separable components at 0.2, 1.8, 7.2, and 18.3 ns, respectively. Competition experiments with the antagonist d-tubocurarine (dTC), known to bind preferentially to the αγ site, result in substantial changes of this signature, associated with a strong decrease in average fluorescence lifetime. Comparisons with two other competitive antagonists, α-conotoxin M1 and α-bungarotoxin, demonstrate that Dnscho binds with a similar affinity to the two sites but that the microenvironment of the probe is different for each site. Using a two-site binding model together with published equilibrium constants to describe the competitive binding of dTC and Dnscho, we reach a satisfactory description of the changes in fluorescence lifetimes and propose characteristic fluorescence parameters of the probe bound to each type of site. This analysis indicates that Dnscho at the αδ site is principally associated with a 8.7 ns lifetime, while it has a 20.2 ns major lifetime at the αγ site. Therefore, the observed fluorescence heterogeneity arises in large part from the structural differences of the two binding sites. As a result, this signal can be used to identify the binding preferences of competitive ligands of unknown pharmacology.

AB - The nicotinic acetylcholine receptor (nAChR) from Torpedo marmorata carries two nonequivalent agonist binding sites at the αδ and αγ subunit interfaces. These sites have been characterized by time-resolved fluorescence with the partial nicotinic agonist dansyl-C6-choline (Dnscho). When bound to the detergent-solubilized receptor, the fluorescence lifetime distribution of Dnscho displays a characteristic signature, with four separable components at 0.2, 1.8, 7.2, and 18.3 ns, respectively. Competition experiments with the antagonist d-tubocurarine (dTC), known to bind preferentially to the αγ site, result in substantial changes of this signature, associated with a strong decrease in average fluorescence lifetime. Comparisons with two other competitive antagonists, α-conotoxin M1 and α-bungarotoxin, demonstrate that Dnscho binds with a similar affinity to the two sites but that the microenvironment of the probe is different for each site. Using a two-site binding model together with published equilibrium constants to describe the competitive binding of dTC and Dnscho, we reach a satisfactory description of the changes in fluorescence lifetimes and propose characteristic fluorescence parameters of the probe bound to each type of site. This analysis indicates that Dnscho at the αδ site is principally associated with a 8.7 ns lifetime, while it has a 20.2 ns major lifetime at the αγ site. Therefore, the observed fluorescence heterogeneity arises in large part from the structural differences of the two binding sites. As a result, this signal can be used to identify the binding preferences of competitive ligands of unknown pharmacology.

U2 - 10.1021/bi992811p

DO - 10.1021/bi992811p

M3 - Journal article

C2 - 10841780

AN - SCOPUS:0034643943

VL - 39

SP - 6979

EP - 6990

JO - Biochemistry

JF - Biochemistry

SN - 0006-2960

IS - 23

ER -

ID: 131611534