Maurotoxin and the Kv1.1 channel:: voltage-dependent binding upon enantiomerization of the scorpion toxin disulfide bridge Cys31-Cys34

被引:9
作者
Lecomte, C
Ben Khalifa, R
Martin-Eauclaire, MF
Kharrat, R
El Ayeb, M
Darbon, H
Rochat, H
Crest, M
Sabatier, JM
机构
[1] Fac Med Nord, IFR Jean Roche, CNRS UMR 6560, Biochim Lab, F-13916 Marseille 20, France
[2] Inst Pasteur Tunis, Lab Venins & Toxines, Tunis, Tunisia
[3] CNRS UPR 9039, AFMB, F-13402 Marseille, France
[4] CNRS UPR 9024, Neurobiol Lab, F-13402 Marseille 20, France
来源
JOURNAL OF PEPTIDE RESEARCH | 2000年 / 55卷 / 03期
关键词
ligand binding; maurotoxin; potassium channels; scorpion toxin; structure-activity; synthetic analogs; voltage dependence;
D O I
10.1034/j.1399-3011.2000.00170.x
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Maurotoxin (MTX) is a 34-amino acid polypeptide cross-linked by four disulfide bridges that has been isolated from the venom of the scorpion Scorpio maurus palmatus and characterized. Maurotoxin competed with radiolabeled apamin and kaliotoxin for binding to rat brain synaptosomes and blocked K+ currents from Kv1 channel subtypes expressed in Xenopus oocytes. Structural characterization of the synthetic toxin identified half-cystine pairings at Cys(3)-Cys(24), Cys(9)-Cys(29) Cys(13)-Cys(19) and Cys(31)-Cys(34.) This disulfide bridge pattern is unique among known scorpion toxins, particularly the existence of a C-terminal '14-membered disulfide ring' (i.e. cyclic domain 31-34), We therefore studied structure-activity relationships by investigating the structure and pharmacological properties of synthetic MTX peptides either modified at the C-terminus {i.e. MTX(1-29), [Abus(31),(34)]-MTX and [Cys(31),(34), Tyr(32)](D)-MTX} or mimicking the cyclic C-terminal domain [i.e. MTX(31-34)]. Unexpectedly, the absence of a disulfide bridge Cys(31)-Cys(34) i, [Abu (31,34)]-MTX and MTX(1-29) resulted in MTX-unrelated half-cystine pairings of the three remaining disulfide bridges for the two analogs, which is likely to be responsible for their inactivity against Ky1 channel subtypes. Cyclic MTX(31-34) was also biologically inactive. [CYS31,34, Tyr(32)](D)-MTX, which had a 'native', MTX-related, disulfide bridge organization, but a D-residue-induced reorientation of the C-terminal disulfide bridge, was potent at blocking the Kv1.1 channel. This peptide-induced Kv1.1 blockage was voltage-dependent (a property not observed for MTX), maximal in the low depolarization range and associated with on-rate changes in ligand binding. Thus, the cyclic C-terminal domain of MTX seems to be crucial for recognition of Kv1.3, and to a lesser extent, Kv1.2 channels and it may contribute to the stabilization and strength of the interaction between the toxin and the Kv1.1 channel.
引用
收藏
页码:246 / 254
页数:9
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