A potassium-channel toxin from the sea anemone Bunodosoma granulifera, an inhibitor for Kv1 channels - Revision of the amino acid sequence, disulfide-bridge assignment, chemical synthesis, and biological activity

被引:91
作者
Cotton, J
Crest, M
Bouet, F
Alessandri, N
Gola, M
Forest, E
Karlsson, E
Castaneda, O
Harvey, AL
Vita, C
Menez, A
机构
[1] CTR ETUD SACLAY,DEPT INGN ETUD PROT,CEA,F-91190 GIF SUR YVETTE,FRANCE
[2] CNRS,NEUROBIOL LAB,UPR 9024,MARSEILLE,FRANCE
[3] CEA,CNRS,INST BIOL STRUCT,GRENOBLE,FRANCE
[4] BIOMED CTR,DEPT BIOCHEM,UPPSALA,SWEDEN
[5] UNIV STRATHCLYDE,DEPT PHYSIOL & PHARMACOL,STRATHCLYDE INST DRUG RES,GLASGOW G1 1XW,LANARK,SCOTLAND
来源
EUROPEAN JOURNAL OF BIOCHEMISTRY | 1997年 / 244卷 / 01期
关键词
potassium-channel toxin; amino acid sequence; peptide synthesis; biological activity; disulfide bond;
D O I
10.1111/j.1432-1033.1997.00192.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The potassium channel toxin secreted by the sea anemone Bunodosoma granulifera (BgK) is a 37-amino-acid peptide containing three disulfide bridges. Because a synthetic peptide corresponding to the reported sequence of BgK was found not to fold properly the sequence was determined again. The new sequence differed from the previous one in the C-terminal tetrapeptide, which contains two cysteines involved in disulfide bridging. The revised sequence is: V C R D W F K E T A C R H A K S L G N C R T S Q K Y R A N C A K T C E L C. The toxin BgK was synthesized according to the new sequence and folded successfully. Disulfide bridges were assigned by peptide mapping on both natural and synthetic farms to be between Cys(2)-Cys(37), Cys11-Cys30 and Cys20-Cys34. The toxin contains a C-terminal free carboxylate as shown by comparing the native toxin with two synthetic peptides containing the C-terminus in either the carboxylate or carboxamido form. Synthetic BgK inhibits binding of I-125-alpha-dendrotoxin to rat brain synaptosomal membranes, similarly to natural BgK (nanomolar range). No activity was observed on maxi-K+ channels incorporated into planar lipid bilayers. The ability of BgK to block voltage-dependent K+ channels was determined from recordings of whole cell currents in Xenopus oocytes injected with cRNA encoding three cloned Kv1 channels (Kv1.1, Kv1.2., Kv1.3) and one Kv3 (Kv3.1) channel. The Shaker-related Kv1 channels are equally affected by BgK, while the Shaw-related channel Kv3.1 is insensitive up to 0.125 mu M toxin. Indeed, half blockage of the current through the three Kv1 channels tested occurred in the same concentration range (K-d = 6 nM for Kv-1.1, 15 nM for Kv1.2, 10 nM for Kv1.3). The specificity of BgK for the Shaker-related K+ channels indicates that BgK is able to discriminate a large group of neuronal Kv1 channels in situ. The sequence, the disulfide bridge pattern, the secondary structure and the biological activity of BgK demonstrated that the sea anemone toxins, i.e. BgK, ShK and Kaliseptine, constitute novel molecular probes useful for investigating K+ channel properties.
引用
收藏
页码:192 / 202
页数:11
相关论文
共 60 条
[1]   TOPOLOGY OF THE PORE-REGION OF A K+ CHANNEL REVEALED BY THE NMR-DERIVED STRUCTURES OF SCORPION TOXINS [J].
AIYAR, J ;
WITHKA, JM ;
RIZZI, JP ;
SINGLETON, DH ;
ANDREWS, GC ;
LIN, W ;
BOYD, J ;
HANSON, DC ;
SIMON, M ;
DETHLEFS, B ;
LEE, CL ;
HALL, JE ;
GUTMAN, GA ;
CHANDY, KG .
NEURON, 1995, 15 (05) :1169-1181
[2]   CHARYBDOTOXIN BLOCK OF SINGLE CA-2+-ACTIVATED K+ CHANNELS - EFFECTS OF CHANNEL GATING, VOLTAGE, AND IONIC-STRENGTH [J].
ANDERSON, CS ;
MACKINNON, R ;
SMITH, C ;
MILLER, C .
JOURNAL OF GENERAL PHYSIOLOGY, 1988, 91 (03) :317-333
[3]   A POTASSIUM CHANNEL TOXIN FROM THE SECRETION OF THE SEA-ANEMONE BUNODOSOMA-GRANULIFERA - ISOLATION, AMINO-ACID-SEQUENCE AND BIOLOGICAL-ACTIVITY [J].
ANEIROS, A ;
GARCIA, I ;
MARTINEZ, JR ;
HARVEY, AL ;
ANDERSON, AJ ;
MARSHALL, DL ;
ENGSTROM, A ;
HELLMAN, U ;
KARLSSON, E .
BIOCHIMICA ET BIOPHYSICA ACTA, 1993, 1157 (01) :86-92
[4]  
ATHERTON E, 1991, PEPTIDES 1990, P243
[5]   3-DIMENSIONAL STRUCTURE OF NATURAL CHARYBDOTOXIN IN AQUEOUS-SOLUTION BY H-1-NMR - CHARYBDOTOXIN POSSESSES A STRUCTURAL MOTIF FOUND IN OTHER SCORPION TOXINS [J].
BONTEMS, F ;
ROUMESTAND, C ;
BOYOT, P ;
GILQUIN, B ;
DOLJANSKY, Y ;
MENEZ, A ;
TOMA, F .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1991, 196 (01) :19-28
[6]   REFINED STRUCTURE OF CHARYBDOTOXIN - COMMON MOTIFS IN SCORPION TOXINS AND INSECT DEFENSINS [J].
BONTEMS, F ;
ROUMESTAND, C ;
GILQUIN, B ;
MENEZ, A ;
TOMA, F .
SCIENCE, 1991, 254 (5037) :1521-1523
[7]   CHARACTERIZATION OF A POTASSIUM CHANNEL TOXIN FROM THE CARIBBEAN SEA-ANEMONE STICHODACTYLA-HELIANTHUS [J].
CASTANEDA, O ;
SOTOLONGO, V ;
AMOR, AM ;
STOCKLIN, R ;
ANDERSON, AJ ;
HARVEY, AL ;
ENGSTROM, A ;
WERNSTEDT, C ;
KARLSSON, E .
TOXICON, 1995, 33 (05) :603-613
[8]   SIMPLIFIED GENE NOMENCLATURE [J].
CHANDY, KG ;
DOUGLAS, J ;
GUTMAN, GA ;
JAN, L ;
JOHO, R ;
KACZMAREK, L ;
MCKINNON, D ;
NORTH, RA ;
NUMA, S ;
PHILIPSON, L ;
RIBERA, AB ;
RUDY, B ;
SALKOFF, L ;
SWANSON, R ;
STEINER, D ;
TANOUYE, M ;
TEMPEL, BL .
NATURE, 1991, 352 (6330) :26-26
[9]  
CHENG Y, 1973, BIOCHEM PHARMACOL, V22, P3099
[10]   ON THE STOCHASTIC PROPERTIES OF SINGLE ION CHANNELS [J].
COLQUHOUN, D ;
HAWKES, AG .
PROCEEDINGS OF THE ROYAL SOCIETY SERIES B-BIOLOGICAL SCIENCES, 1981, 211 (1183) :205-235