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Items: 20

1.

Design of a specific activator for skeletal muscle sodium channels uncovers channel architecture.

Cohen L, Ilan N, Gur M, Stühmer W, Gordon D, Gurevitz M.

J Biol Chem. 2007 Oct 5;282(40):29424-30. Epub 2007 Aug 8.

2.

Voltage-gated ion channels and gating modifier toxins.

Catterall WA, Cestèle S, Yarov-Yarovoy V, Yu FH, Konoki K, Scheuer T.

Toxicon. 2007 Feb;49(2):124-41. Epub 2006 Sep 28. Review.

3.

The differential preference of scorpion alpha-toxins for insect or mammalian sodium channels: implications for improved insect control.

Gordon D, Karbat I, Ilan N, Cohen L, Kahn R, Gilles N, Dong K, Stühmer W, Tytgat J, Gurevitz M.

Toxicon. 2007 Mar 15;49(4):452-72. Epub 2006 Nov 28. Review.

PMID:
17215013
4.

The insecticidal potential of scorpion beta-toxins.

Gurevitz M, Karbat I, Cohen L, Ilan N, Kahn R, Turkov M, Stankiewicz M, Stühmer W, Dong K, Gordon D.

Toxicon. 2007 Mar 15;49(4):473-89. Epub 2006 Nov 28. Review.

PMID:
17197009
5.

Structure and function of the voltage sensor of sodium channels probed by a beta-scorpion toxin.

Cestèle S, Yarov-Yarovoy V, Qu Y, Sampieri F, Scheuer T, Catterall WA.

J Biol Chem. 2006 Jul 28;281(30):21332-44. Epub 2006 May 4.

6.

Common features in the functional surface of scorpion beta-toxins and elements that confer specificity for insect and mammalian voltage-gated sodium channels.

Cohen L, Karbat I, Gilles N, Ilan N, Benveniste M, Gordon D, Gurevitz M.

J Biol Chem. 2005 Feb 11;280(6):5045-53. Epub 2004 Nov 29.

7.

Conversion of a scorpion toxin agonist into an antagonist highlights an acidic residue involved in voltage sensor trapping during activation of neuronal Na+ channels.

Karbat I, Cohen L, Gilles N, Gordon D, Gurevitz M.

FASEB J. 2004 Apr;18(6):683-9. Erratum in: FASEB J. 2004 Jun;18(9):following 947.

PMID:
15054090
8.

Effect of depolarization on binding kinetics of scorpion alpha-toxin highlights conformational changes of rat brain sodium channels.

Gilles N, Leipold E, Chen H, Heinemann SH, Gordon D.

Biochemistry. 2001 Dec 4;40(48):14576-84.

PMID:
11724571
9.

Neutralization of gating charges in domain II of the sodium channel alpha subunit enhances voltage-sensor trapping by a beta-scorpion toxin.

Cestèle S, Scheuer T, Mantegazza M, Rochat H, Catterall WA.

J Gen Physiol. 2001 Sep;118(3):291-302.

10.
11.

From ionic currents to molecular mechanisms: the structure and function of voltage-gated sodium channels.

Catterall WA.

Neuron. 2000 Apr;26(1):13-25. Review. No abstract available.

12.

The voltage sensor in voltage-dependent ion channels.

Bezanilla F.

Physiol Rev. 2000 Apr;80(2):555-92. Review. Erratum in: Physiol Rev 2000 Jul;80(3):followi.

PMID:
10747201
13.

Voltage sensor-trapping: enhanced activation of sodium channels by beta-scorpion toxin bound to the S3-S4 loop in domain II.

Cestèle S, Qu Y, Rogers JC, Rochat H, Scheuer T, Catterall WA.

Neuron. 1998 Oct;21(4):919-31.

14.

Effects of Tityus serrulatus scorpion toxin gamma on voltage-gated Na+ channels.

Marcotte P, Chen LQ, Kallen RG, Chahine M.

Circ Res. 1997 Mar;80(3):363-9.

16.

Visual identification of individual transfected cells for electrophysiology using antibody-coated beads.

Jurman ME, Boland LM, Liu Y, Yellen G.

Biotechniques. 1994 Nov;17(5):876-81.

PMID:
7840967
17.

Neurotoxins that act on voltage-sensitive sodium channels in excitable membranes.

Catterall WA.

Annu Rev Pharmacol Toxicol. 1980;20:15-43. Review. No abstract available.

PMID:
6247957
18.

Structural parts involved in activation and inactivation of the sodium channel.

Stühmer W, Conti F, Suzuki H, Wang XD, Noda M, Yahagi N, Kubo H, Numa S.

Nature. 1989 Jun 22;339(6226):597-603.

PMID:
2543931
19.

Molecular properties of voltage-sensitive sodium channels.

Catterall WA.

Annu Rev Biochem. 1986;55:953-85. Review. No abstract available.

PMID:
2427018
20.

Molecular model of the action potential sodium channel.

Guy HR, Seetharamulu P.

Proc Natl Acad Sci U S A. 1986 Jan;83(2):508-12.

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