首页> 美国卫生研究院文献>The Journal of General Physiology >Identification of a Peptide Toxin from Grammostola spatulata Spider Venom That Blocks Cation-Selective Stretch-Activated Channels
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Identification of a Peptide Toxin from Grammostola spatulata Spider Venom That Blocks Cation-Selective Stretch-Activated Channels

机译:鉴定了从克霉菌蜘蛛毒素中阻断阳离子选择性拉伸激活通道的肽毒素。

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摘要

We have identified a 35 amino acid peptide toxin of the inhibitor cysteine knot family that blocks cationic stretch-activated ion channels. The toxin, denoted GsMTx-4, was isolated from the venom of the spider Grammostola spatulata and has <50% homology to other neuroactive peptides. It was isolated by fractionating whole venom using reverse phase HPLC, and then assaying fractions on stretch-activated channels (SACs) in outside-out patches from adult rat astrocytes. Although the channel gating kinetics were different between cell-attached and outside-out patches, the properties associated with the channel pore, such as selectivity for alkali cations, conductance (∼45 pS at −100 mV) and a mild rectification were unaffected by outside-out formation. GsMTx-4 produced a complete block of SACs in outside-out patches and appeared specific since it had no effect on whole-cell voltage-sensitive currents. The equilibrium dissociation constant of ∼630 nM was calculated from the ratio of association and dissociation rate constants. In hypotonically swollen astrocytes, GsMTx-4 produces ∼40% reduction in swelling-activated whole-cell current. Similarly, in isolated ventricular cells from a rabbit dilated cardiomyopathy model, GsMTx-4 produced a near complete block of the volume-sensitive cation-selective current, but did not affect the anion current. In the myopathic heart cells, where the swell-induced current is tonically active, GsMTx-4 also reduced the cell size. This is the first report of a peptide toxin that specifically blocks stretch-activated currents. The toxin affect on swelling-activated whole-cell currents implicates SACs in volume regulation.
机译:我们已确定了抑制剂半胱氨酸结家族的35个氨基酸的肽毒素,该毒素可阻断阳离子拉伸激活离子通道。该毒素表示为GsMTx-4,是从蜘蛛Grammostola spatulata的毒液中分离出来的,与其他神经活性肽的同源性<50%。通过使用反相HPLC分离整个毒液,然后在成年大鼠星形胶质细胞的外向外斑片中的拉伸激活通道(SAC)上测定级分,将其分离。尽管细胞附着和外出贴片之间的通道门控动力学不同,但是与通道孔相关的特性,例如对碱金属阳离子的选择性,电导率(在-100 mV下约为45 pS)和适度的整流不受外界影响出阵型。 GsMTx-4在外向内的贴片中产生了完整的SAC块,并且由于对全细胞电压敏感电流没有影响而显得特异性。由缔合和解离速率常数之比计算出约630 nM的平衡解离常数。在低渗性星形胶质细胞中,GsMTx-4可使肿胀激活的全细胞电流减少约40%。同样,在兔扩张型心肌病模型的分离的心室细胞中,GsMTx-4产生了几乎完整的体积敏感阳离子选择性电流阻滞物,但并不影响阴离子电流。在溶胀诱导的电流活跃的肌病性心肌细胞中,GsMTx-4还能减小细胞大小。这是专门阻断拉伸激活电流的肽毒素的首次报道。毒素对肿胀激活的全细胞电流的影响牵涉到SAC的体积调节。

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