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[125I]埃博毒素-D19Y/Y36F,首个用于高电导钙激活钾通道的选择性、高比活度放射性配体。

[125I]Iberiotoxin-D19Y/Y36F, the first selective, high specific activity radioligand for high-conductance calcium-activated potassium channels.

作者信息

Koschak A, Koch R O, Liu J, Kaczorowski G J, Reinhart P H, Garcia M L, Knaus H G

机构信息

Institut für Biochemische Pharmakologie, Innsbruck, Austria.

出版信息

Biochemistry. 1997 Feb 18;36(7):1943-52. doi: 10.1021/bi962074m.

Abstract

Iberiotoxin (IbTX), a selective peptidyl ligand for high-conductance Ca2(+)-activated K+ (maxi-K) channels cannot be radioiodinated in biologically active form due to the importance of Y36 in interacting with the channel pore. Therefore, an IbTX double mutant (IbTX-D19Y/Y36F) was engineered, expressed in Escherichia coli, purified to homogeneity, and radiolabeled to high specific activity with 125I. IbTX-D19Y/Y36F and [127I]IbTX-D19Y/Y36F block maxi-K channels expressed in Xenopus laevis oocytes with equal potency as wild-type IbTX (Kd approximately 1 nM). Under low ionic strength conditions, [125I]IbTX-D19Y/Y36F binds with high affinity to smooth muscle sarcolemmal maxi-K channels (Kd of 5 pM as determined by either equilibrium binding or kinetic binding analysis), and with a binding site density of 0.45 pmol/mg of protein. Competition studies with wild-type IbTX, IbTX-D19Y/Y36F or charybdotoxin (ChTX) result in complete inhibition of binding whereas toxins selective for voltage-gated K+ channels (margatoxin (MgTX) or alpha-dendrotoxin (alpha-DaTX) do not have any effect on IbTX binding. Indole diterpene alkaloids, which are selective inhibitors of maxi-K channels, and potassium ions both modulate [125I]IbTX-D19Y/Y36F binding in a complex manner. This pattern is also reflected during covalent incorporation of the radiolabeled toxin into the 31 kDa beta-subunit of the maxi-K channel in the presence of a bifunctional cross-linking reagent. In rat brain membranes, IbTX-D19Y/Y36F does not displace binding of [125I]MgTX or [125I]-alpha-DaTX to sites associated with voltage-gated K+ channels, nor do these latter toxins inhibit [125I]IbTX-D19Y/Y36F binding. Taken together, these results demonstrate that [125I]IbTX-D19Y/Y36F is the first selective radioligand for maxi-K channels with high specific activity.

摘要

埃博毒素(IbTX)是一种针对高电导Ca2+激活K+(大电导K+)通道的选择性肽基配体,由于Y36在与通道孔相互作用中的重要性,它无法以生物活性形式进行放射性碘化。因此,构建了一种IbTX双突变体(IbTX-D19Y/Y36F),在大肠杆菌中表达,纯化至同质,并以125I进行高比活放射性标记。IbTX-D19Y/Y36F和[127I]IbTX-D19Y/Y36F阻断非洲爪蟾卵母细胞中表达的大电导K+通道的效力与野生型IbTX相同(解离常数约为1 nM)。在低离子强度条件下,[125I]IbTX-D19Y/Y36F与平滑肌肌膜大电导K+通道具有高亲和力结合(通过平衡结合或动力学结合分析确定的解离常数为5 pM),结合位点密度为0.45 pmol/mg蛋白质。用野生型IbTX、IbTX-D19Y/Y36F或蝎毒素(ChTX)进行竞争研究导致结合完全被抑制,而对电压门控K+通道具有选择性的毒素(边缘毒素(MgTX)或α-树眼镜蛇毒素(α-DaTX))对IbTX结合没有任何影响。吲哚二萜生物碱是大电导K+通道的选择性抑制剂,钾离子均以复杂方式调节[125I]IbTX-D19Y/Y36F的结合。在双功能交联剂存在下,放射性标记毒素共价掺入大电导K+通道的31 kDaβ亚基的过程中也反映出这种模式。在大鼠脑膜中,IbTX-D19Y/Y36F不会取代[125I]MgTX或[125I]-α-DaTX与电压门控K+通道相关位点的结合,后两种毒素也不会抑制[125I]IbTX-D19Y/Y36F的结合。综上所述,这些结果表明[125I]IbTX-D19Y/Y36F是第一个具有高比活的大电导K+通道选择性放射性配体。

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