Andersen Trine F, Tikhonov Denis B, Bølcho Ulrik, Bolshakov Konstantin, Nelson Jared K, Pluteanu Florentina, Mellor Ian R, Egebjerg Jan, Strømgaard Kristian
Department of Medicinal Chemistry, The Danish University of Pharmaceutical Sciences, DK-2100 Copenhagen, Denmark.
J Med Chem. 2006 Sep 7;49(18):5414-23. doi: 10.1021/jm060606j.
Philanthotoxins are uncompetitive antagonists of Ca2+-permeable AMPA receptors presumed to bind to the pore-forming region, but a detailed molecular mechanism for this interaction is missing. Here a small library of novel philanthotoxins was designed and synthesized using a solid-phase strategy. The biological activities were investigated at cloned and "native" AMPA receptors using electrophysiological techniques. A distinct relationship between length of the polyamine moiety and the location of a secondary amino group was observed. Fitting the data to the Woodhull equation allowed the first experimental demonstration of the relative location and orientation of the philanthotoxin molecule in the receptor. These results were corroborated by in silico studies using a homology model of the AMPA receptor ion channel. Together these studies provide strong evidence for a molecular mechanism by which polyamine toxins antagonize the AMPA receptor ion channel and provide the basis for rational development of uncompetitive antagonists of AMPA receptors.
philanthotoxins是Ca2+通透型AMPA受体的非竞争性拮抗剂,推测其与孔形成区域结合,但这种相互作用的详细分子机制尚不清楚。在此,使用固相策略设计并合成了一个新型philanthotoxins小文库。利用电生理技术在克隆的和“天然”的AMPA受体上研究了其生物活性。观察到多胺部分长度与仲氨基位置之间存在明显关系。将数据拟合到Woodhull方程,首次通过实验证明了philanthotoxin分子在受体中的相对位置和取向。使用AMPA受体离子通道的同源模型进行的计算机模拟研究证实了这些结果。这些研究共同为多胺毒素拮抗AMPA受体离子通道的分子机制提供了有力证据,并为合理开发AMPA受体的非竞争性拮抗剂奠定了基础。