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(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Tuning Scorpion Toxin Selectivity: Switching From K(V)1.1 to K(V)1.3

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Author(s):
Gigolaev, Andrei M. [1] ; Kuzmenkov, I, Alexey ; Peigneur, Steve [2] ; Tabakmakher, Valentin M. [3, 4] ; Pinheiro-Junior, Ernesto L. [2] ; Chugunov, Anton O. [5, 3, 6] ; Efremov, Roman G. [5, 3, 6] ; Tytgat, Jan [2] ; Vassilevski, Alexander A. [5, 3]
Total Authors: 9
Affiliation:
[1] Russian Acad Sci, Shemyakin Ovchinnikov Inst Bioorgan Chem, Moscow - Russia
[2] Katholieke Univ Leuven, Toxicol & Pharmacol, Leuven - Belgium
[3] Kuzmenkov, Alexey, I, Russian Acad Sci, Shemyakin Ovchinnikov Inst Bioorgan Chem, Moscow - Russia
[4] Far Eastern Fed Univ, Sch Biomed, Vladivostok - Russia
[5] Moscow Inst Phys & Technol, Dolgoprudnyi - Russia
[6] Natl Res Univ Higher Sch Econ, Dept Appl Math, Moscow - Russia
Total Affiliations: 6
Document type: Journal article
Source: FRONTIERS IN PHARMACOLOGY; v. 11, JUL 7 2020.
Web of Science Citations: 0
Abstract

Voltage-gated potassium channels (K(V)s) perform vital physiological functions and are targets in different disorders ranging from ataxia and arrhythmia to autoimmune diseases. An important issue is the search for and production of selective ligands of these channels. Peptide toxins found in scorpion venom named KTx excel in both potency and selectivity with respect to some potassium channel isoforms, which may present only minute differences in their structure. Despite several decades of research the molecular determinants of KTx selectivity are still poorly understood. Here we analyze MeKTx13-3 (Kalium ID: alpha-KTx 3.19) from the lesser Asian scorpionMesobuthus eupeus, a high-affinity K(V)1.1 blocker (IC(50 similar to)2 nM); it also affects K(V)1.2 (IC50 similar to 100 nM), 1.3 (similar to 10 nM) and 1.6 (similar to 60 nM). By constructing computer models of its complex with K(V)1.1-1.3 channels we identify specific contacts between the toxin and the three isoforms. We then perform mutagenesis to disturb the identified contacts with K(V)1.1 and 1.2 and produce recombinant MeKTx13-3\_AAAR, which differs by four amino acid residues from the parent toxin. As predicted by the modeling, this derivative shows decreased activity on K(V)1.1 (IC(50 similar to)550 nM) and 1.2 (similar to 200 nM). It also has diminished activity on K(V)1.6 (similar to 1500 nM) but preserves K(V)1.3 affinity as measured using the voltage-clamp technique on mammalian channels expressed inXenopusoocytes. In effect, we convert a selective K(V)1.1 ligand into a new specific K(V)1.3 ligand. MeKTx13-3 and its derivatives are attractive tools to study the structure-function relationship in potassium channel blockers. (AU)

FAPESP's process: 16/04761-4 - Functional and structural characterization and immune response evaluation of a recombinant serine protease from Crotalus durissus collilineatus modified by PEGylation
Grantee:Ernesto Lopes Pinheiro Junior
Support Opportunities: Scholarships in Brazil - Doctorate (Direct)