Cruz L J, Gray W R, Olivera B M, Zeikus R D, Kerr L, Yoshikami D, Moczydlowski E
J Biol Chem. 1985 Aug 5;260(16):9280-8.
We describe the properties of a family of 22-amino acid peptides, the mu-conotoxins, which are useful probes for investigating voltage-dependent sodium channels of excitable tissues. The mu-conotoxins are present in the venom of the piscivorous marine snail, Conus geographus L. We have purified seven homologs of the mu-conotoxin set and determined their amino acid sequences, as follows, where Hyp = trans-4-hydroxyproline. GIIIA R.D.C.C.T.Hyp.Hyp.K.K.C.K.D.R.Q.C.K.Hyp.Q.R.C.C.A-NH2 [Pro6]GIIIA R.D.C.C. T.P.Hyp.K.K.C.K.D.R.Q.C.K.Hyp.Q.R.C.C.A-NH2 [Pro7]GIIIA R.D.C.C.T.Hyp.P.K.K.C.K.D.R.Q.C.R.Hyp.Q.R.C.C.A-NH2 GIIIB R.D.C.C.T.Hyp.Hyp.R.K.C.K.D.R.R.C.K.Hyp.M.K.C.C.A-NH2 [Pro6]GIIIB R.D.C.C.T.P.Hyp.R.K.C.K.D.R.R. C.K.Hyp.M.K.C.C.A-NH2 [Pro7]GIIIB R.D.C.C.T.Hyp.P.R.K.C.K.D.R.R.C.K.Hyp.M.K.C.C.A-NH2 GIIIC R.D.C.C.T.Hyp.Hyp.K.K.C.K.D.R.R.C.K.Hyp.L.K.C.C.A-NH2. Using the major peptide (GIIIA) in electrophysiological studies on nerve-muscle preparations and in single channel studies using planar lipid bilayers, we have established that the toxin blocks muscle sodium channels, while having no discernible effect on nerve or brain sodium channels. In bilayers the blocking kinetics of GIIIA were derived by statistical analysis of discrete transitions between blocked and unblocked states of batrachotoxin-activated sodium channels from rat muscle. The kinetics conform to a single-site, reversible binding equilibrium with a voltage-dependent binding constant. The measured value of the equilibrium KD for GIIIA is 100 nM at OmV, decreasing e-fold/34 mV of hyperpolarization. This voltage dependence of blocking is similar to that of tetrodotoxin and saxitoxin as measured by the same technique. The tissue specificity and kinetic characteristics suggest that the mu-conotoxins may serve as useful ligands to distinguish sodium channel subtypes in different tissues.
我们描述了一族由22个氨基酸组成的肽——μ-芋螺毒素的特性,它们是研究可兴奋组织中电压依赖性钠通道的有用探针。μ-芋螺毒素存在于食鱼海洋蜗牛——地纹芋螺(Conus geographus L.)的毒液中。我们已纯化出μ-芋螺毒素组的7个同源物,并确定了它们的氨基酸序列,如下所示,其中Hyp = 反式-4-羟基脯氨酸。
GIIIA R.D.C.C.T.Hyp.Hyp.K.K.C.K.D.R.Q.C.K.Hyp.Q.R.C.C.A-NH2
[Pro6]GIIIA R.D.C.C.T.P.Hyp.K.K.C.K.D.R.Q.C.K.Hyp.Q.R.C.C.A-NH2
[Pro7]GIIIA R.D.C.C.T.Hyp.P.K.K.C.K.D.R.Q.C.R.Hyp.Q.R.C.C.A-NH2
GIIIB R.D.C.C.T.Hyp.Hyp.R.K.C.K.D.R.R.C.K.Hyp.M.K.C.C.A-NH2
[Pro6]GIIIB R.D.C.C.T.P.Hyp.R.K.C.K.D.R.R.C.K.Hyp.M.K.C.C.A-NH2
[Pro7]GIIIB R.D.C.C.T.Hyp.P.R.K.C.K.D.R.R.C.K.Hyp.M.K.C.C.A-NH2
GIIIC R.D.C.C.T.Hyp.Hyp.K.K.C.K.D.R.R.C.K.Hyp.L.K.C.C.A-NH2。
在对神经肌肉标本的电生理研究以及使用平面脂质双层的单通道研究中,我们使用主要肽(GIIIA)证实,该毒素可阻断肌肉钠通道,而对神经或脑钠通道没有明显影响。在脂质双层中,GIIIA的阻断动力学是通过对来自大鼠肌肉的蟾毒素激活的钠通道的阻断和未阻断状态之间的离散转变进行统计分析得出的。动力学符合具有电压依赖性结合常数的单位点、可逆结合平衡。在0mV时,GIIIA的平衡KD测量值为100 nM,超极化每34 mV下降e倍。通过相同技术测量,这种阻断的电压依赖性与河豚毒素和石房蛤毒素的相似。组织特异性和动力学特征表明,μ-芋螺毒素可能是区分不同组织中钠通道亚型的有用配体。