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取代苯并[c]喹嗪鎓CFTR激活剂对ATP敏感性钾通道的抑制作用。

Inhibition of ATP-sensitive K+ channels by substituted benzo[c]quinolizinium CFTR activators.

作者信息

Prost Ann- Lise, Dérand Renaud, Gros Laurent, Becq Frédéric, Vivaudou Michel

机构信息

CEA, DRDC, Laboratoire de Biophysique Moléculaire et Cellulaire (UMR 5090), 17 rue des Martyrs, 38054 Grenoble, France.

出版信息

Biochem Pharmacol. 2003 Aug 1;66(3):425-30. doi: 10.1016/s0006-2952(03)00289-2.

Abstract

The substituted benzo[c]quinolizinium compounds MPB-07 and MPB-91 are novel activators of the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel. High homologies between CFTR and the sulfonylurea receptor (SUR), which associates with the potassium channel Kir6.2 to form the ATP-sensitive K(+) (K(ATP)) channel, prompted us to examine possible effects of these compounds on K(ATP) channels using electrophysiological recordings and binding assays. Activity of recombinant K(ATP) channels expressed in Xenopus oocytes was recorded in the inside-out configuration of the patch-clamp technique. Channels were practically unaffected by MPB-07 but were fully blocked by MPB-91 with half-inhibition achieved at approximately 20 microM MPB-91. These effects were similar on channels formed by Kir6.2, and either the SUR1 or SUR2A isoforms were independent of the presence of nucleotides. They were not influenced by SUR mutations known to interfere with its nucleotide-binding capacity. MPB-91, but not MPB-07, was able to displace binding of glibenclamide to HEK cells expressing recombinant SUR1/Kir6.2 channels. Glibenclamide binding to native channels from pancreatic MIN6 cells was also displaced by MPB-91. A Kir6.2 mutant able to form channels without SUR was also blocked by MPB-91, but not by MPB-07. These observations demonstrate that neither MPB-07 nor MPB-91 interact with SUR, in spite of its high homology with CFTR, and that MPB-91 blocks K(ATP) channels by binding to the Kir6.2 subunit. Thus, caution should be exercised when planning to use MPB compounds in cystic fibrosis therapy, specially MPB-91 which could nonetheless find interesting applications as the precursor of a new class of K channel blockers.

摘要

取代苯并[c]喹啉鎓化合物MPB - 07和MPB - 91是囊性纤维化跨膜传导调节因子(CFTR)氯离子通道的新型激活剂。CFTR与磺脲类受体(SUR)高度同源,后者与钾通道Kir6.2结合形成ATP敏感性钾(K(ATP))通道,这促使我们使用电生理记录和结合试验来研究这些化合物对K(ATP)通道的可能影响。采用膜片钳技术的内面向外模式记录非洲爪蟾卵母细胞中表达的重组K(ATP)通道的活性。通道实际上不受MPB - 07影响,但被MPB - 91完全阻断,在约20微摩尔MPB - 91时达到半数抑制。这些作用对由Kir6.2形成的通道类似,并且SUR1或SUR2A亚型与核苷酸的存在无关。它们不受已知干扰其核苷酸结合能力的SUR突变的影响。MPB - 91能够取代格列本脲与表达重组SUR1/Kir6.2通道的HEK细胞的结合,但MPB - 07不能。MPB - 91也能取代格列本脲与胰腺MIN6细胞天然通道的结合。一种能够在没有SUR的情况下形成通道的Kir6.2突变体也被MPB - 91阻断,但不被MPB - 07阻断。这些观察结果表明,尽管SUR与CFTR高度同源,但MPB - 07和MPB - 91均不与SUR相互作用,并且MPB - 91通过与Kir6.2亚基结合来阻断K(ATP)通道。因此,在计划将MPB化合物用于囊性纤维化治疗时应谨慎,特别是MPB - 91,尽管如此,它作为一类新型钾通道阻滞剂的前体可能会有有趣的应用。

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