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Using Ion Channel-Forming Peptides to Quantify Protein-Ligand Interactions

机译:使用离子通道形成肽来定量蛋白质-配体相互作用

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This paper proposes a method for sensing affinity interactions by triggering disruption of self-assembly of ion channel-forming peptides in planar lipid bilayers. It shows that the binding of a derivative of alamethicin carrying a covalently attached sulfonamide ligand to carbonic anhydrase II (CA II) resulted in the inhibition of ion channel conductance through the bilayer. We propose that the binding of the bulky CA II protein (MW ≈ 30 kD) to the ion channel-forming peptides (MW ≈ 2.5 kD) either reduced the tendency of these peptides to self-assemble into a pore or extracted them from the bilayer altogether. In both outcomes, the interactions between the protein and the ligand lead to a disruption of self-assembled pores. Addition of a competitive inhibitor, 4-carboxybenzenesulfonamide, to the solution released CA II from the alamethicin-sulfonamide conjugate and restored the current flow across the bilayer by allowing reassembly of the ion channels in the bilayer. Time-averaged recordings of the current over discrete time intervals made it possible to quantify this monovalent ligand binding interaction. This method gave a dissociation constant of ~2 μM for the binding of CA II to alamethicin-sulfonamide in the bilayer recording chamber: this value is consistent with a value obtained independently with CA II and a related sulfonamide derivative by isothermal titration calorimetry.
机译:本文提出了一种通过触发平面脂质双层中离子通道形成肽自组装的破坏来检测亲和力相互作用的方法。结果表明,带有共价连接的磺酰胺配体的阿拉美霉素衍生物与碳酸酐酶II(CA II)的结合导致抑制了通过双层的离子通道电导。我们建议将庞大的CA II蛋白(MW≈30 kD)与离子通道形成肽(MW≈2.5 kD)结合,可以降低这些肽自组装成孔的趋势,也可以从双层中提取它们共。在这两种结果中,蛋白质和配体之间的相互作用导致自组装孔的破坏。向溶液中添加竞争性抑制剂4-羧基苯磺酰胺,从芳香族抗生素-磺酰胺共轭物中释放CA II,并通过允许双层中离子通道的重新组装来恢复流过双层的电流。在不连续的时间间隔内对电流进行时间平均记录可以量化这种单价配体结合相互作用。该方法在双层记录室中给出了CA II与alamethicin-磺酰胺结合的解离常数约2μM:该值与通过等温滴定热法独立于CA II和相关的磺酰胺衍生物获得的值一致。

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