Thompson Christopher H, Olivetti Pedro R, Fuller Matthew D, Freeman Cody S, McMaster Denis, French Robert J, Pohl Jan, Kubanek Julia, McCarty Nael A
School of Biology, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
J Biol Chem. 2009 Sep 18;284(38):26051-62. doi: 10.1074/jbc.M109.031724. Epub 2009 Jul 1.
The ClC protein family includes voltage-gated chloride channels and chloride/proton exchangers. In eukaryotes, ClC proteins regulate membrane potential of excitable cells, contribute to epithelial transport, and aid in lysosomal acidification. Although structure/function studies of ClC proteins have been aided greatly by the available crystal structures of a bacterial ClC chloride/proton exchanger, the availability of useful pharmacological tools, such as peptide toxin inhibitors, has lagged far behind that of their cation channel counterparts. Here we report the isolation, from Leiurus quinquestriatus hebraeus venom, of a peptide toxin inhibitor of the ClC-2 chloride channel. This toxin, GaTx2, inhibits ClC-2 channels with a voltage-dependent apparent K(D) of approximately 20 pm, making it the highest affinity inhibitor of any chloride channel. GaTx2 slows ClC-2 activation by increasing the latency to first opening by nearly 8-fold but is unable to inhibit open channels, suggesting that this toxin inhibits channel activation gating. Finally, GaTx2 specifically inhibits ClC-2 channels, showing no inhibitory effect on a battery of other major classes of chloride channels and voltage-gated potassium channels. GaTx2 is the first peptide toxin inhibitor of any ClC protein. The high affinity and specificity displayed by this toxin will make it a very powerful pharmacological tool to probe ClC-2 structure/function.
ClC蛋白家族包括电压门控氯离子通道和氯离子/质子交换体。在真核生物中,ClC蛋白调节可兴奋细胞的膜电位,促进上皮运输,并有助于溶酶体酸化。尽管细菌ClC氯离子/质子交换体的现有晶体结构极大地辅助了ClC蛋白的结构/功能研究,但诸如肽毒素抑制剂等有用药理学工具的可得性却远远落后于其阳离子通道对应物。在此我们报告从以色列金蝎毒液中分离出一种ClC-2氯离子通道的肽毒素抑制剂。这种毒素,即GaTx2,以大约20皮摩尔的电压依赖性表观解离常数(K(D))抑制ClC-2通道,使其成为任何氯离子通道的最高亲和力抑制剂。GaTx2通过将首次开放的延迟增加近8倍来减缓ClC-2的激活,但无法抑制开放通道,这表明该毒素抑制通道激活门控。最后,GaTx2特异性抑制ClC-2通道,对一系列其他主要类型的氯离子通道和电压门控钾通道没有抑制作用。GaTx2是首个针对任何ClC蛋白的肽毒素抑制剂。这种毒素所展现出的高亲和力和特异性将使其成为探究ClC-2结构/功能的非常强大的药理学工具。