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对磺脲类药物和开放剂具有高亲和力的突变型磺脲类受体SUR2B的特性:与Kir6.x亚型偶联的差异。

Characterization of a mutant sulfonylurea receptor SUR2B with high affinity for sulfonylureas and openers: differences in the coupling to Kir6.x subtypes.

作者信息

Hambrock A, Löffler-Walz C, Russ U, Lange U, Quast U

机构信息

Department of Pharmacology, University of Tübingen, Tübingen, Germany.

出版信息

Mol Pharmacol. 2001 Jul;60(1):190-9. doi: 10.1124/mol.60.1.190.

Abstract

ATP-dependent K(+) channels are composed of pore-forming subunits of the Kir6.x family and of sulfonylurea receptors (SURs). SUR1, expressed in pancreatic beta-cells, has a higher affinity for sulfonylureas, such as glibenclamide, than SUR2B, expressed in smooth muscle. This difference is mainly caused by serine 1237 in SUR1 corresponding to tyrosine 1206 in SUR2B. To increase the affinity of SUR2B for glibenclamide, the mutant SUR2B(Y1206S) was constructed. In whole-cell patch-clamp experiments, glibenclamide inhibited the channel formed by coexpression of mutant SUR2B with Kir6.1 or 6.2 in human embryonic kidney cells with IC(50) values of 2.7 and 13 nM, respectively (wild-type, 43 and 167 nM). In intact cells, [(3)H]glibenclamide bound to mutant SUR2B with a K(D) value of 4.7 nM (wild-type, 32 nM); coexpression with Kir6.1 or 6.2 increased affinity by 4- and 8-fold, respectively. Binding of the opener [(3)H]P1075 to SUR2B(Y1206S) was the same as to wild-type and was unaffected by coexpression. In cells, the ratio of glibenclamide:P1075 sites was approximately 1:1; in membranes, it varied with the MgATP concentration. Heterologous competition curves were generally biphasic; the shape of the curve depended on the Kir-subtype. The effects of coexpression were weakened or abolished when binding assays were conducted in membranes. It is concluded that the mutation Y1206S increases the affinity of SUR2B for and the channel sensitivity toward glibenclamide by 7- to 15-fold. The interaction of glibenclamide (but not opener) with mutant SUR2B is modified by coexpression with Kir6.x in a manner depending on the Kir subtype and on the integrity of the cell.

摘要

ATP 依赖性钾通道由 Kir6.x 家族的成孔亚基和磺脲类受体(SURs)组成。在胰腺β细胞中表达的 SUR1 对磺脲类药物(如格列本脲)的亲和力高于在平滑肌中表达的 SUR2B。这种差异主要是由 SUR1 中的丝氨酸 1237 与 SUR2B 中的酪氨酸 1206 相对应所致。为了提高 SUR2B 对格列本脲的亲和力,构建了突变体 SUR2B(Y1206S)。在全细胞膜片钳实验中,格列本脲抑制了在人胚肾细胞中突变体 SUR2B 与 Kir6.1 或 Kir6.2 共表达形成的通道,IC(50)值分别为 2.7 和 13 nM(野生型为 43 和 167 nM)。在完整细胞中,[(3)H]格列本脲与突变体 SUR2B 的结合 K(D)值为 4.7 nM(野生型为 32 nM);与 Kir6.1 或 Kir6.2 共表达分别使亲和力提高了 4 倍和~8 倍。开放剂[(3)H]P1075 与 SUR2B(Y1206S)的结合与野生型相同,且不受共表达的影响。在细胞中,格列本脲:P1075 位点的比例约为 1:1;在膜中,该比例随 MgATP 浓度而变化。异源竞争曲线通常为双相;曲线形状取决于 Kir 亚型。当在膜中进行结合测定时,共表达的影响减弱或消除。结论是,Y1206S 突变使 SUR2B 对格列本脲的亲和力和通道对格列本脲的敏感性提高了 7 至 15 倍。格列本脲(而非开放剂)与突变体 SUR2B 的相互作用通过与 Kir6.x 共表达而改变,其方式取决于 Kir 亚型和细胞的完整性。

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