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钾通道通过组成型内吞作用和细胞内隔离而失活。

Potassium channel silencing by constitutive endocytosis and intracellular sequestration.

机构信息

Institut de Pharmacologie Moléculaire et Cellulaire, CNRS, and Université de Nice Sophia-Antipolis, Sophia-Antipolis, 06560 Valbonne, France.

出版信息

J Biol Chem. 2010 Feb 12;285(7):4798-805. doi: 10.1074/jbc.M109.078535. Epub 2009 Dec 3.

Abstract

Tandem of P domains in a weak inwardly rectifying K(+) channel 1 (TWIK1) is a K(+) channel that produces unusually low levels of current. Replacement of lysine 274 by a glutamic acid (K274E) is associated with stronger currents. This mutation would prevent conjugation of a small ubiquitin modifier peptide to Lys-274, a mechanism proposed to be responsible for channel silencing. However, we found no biochemical evidence of TWIK1 sumoylation, and we showed that the conservative change K274R did not increase current, suggesting that K274E modifies TWIK1 gating through a charge effect. Now we rule out an eventual effect of K274E on TWIK1 trafficking, and we provide convincing evidence that TWIK1 silencing results from its rapid retrieval from the cell surface. TWIK1 is internalized via a dynamin-dependent mechanism and addressed to the recycling endosomal compartment. Mutation of a diisoleucine repeat located in its cytoplasmic C terminus (I293A,I294A) stabilizes TWIK1 at the plasma membrane, resulting in robust currents. The effects of I293A,I294A on channel trafficking and of K274E on channel activity are cumulative, promoting even more currents. Activation of serotoninergic receptor 5-HT(1)R or adrenoreceptor alpha2A-AR stimulates TWIK1 but has no effect on TWIK1I293A,I294A, suggesting that G(i) protein activation is a physiological signal for increasing the number of active channels at the plasma membrane.

摘要

串联的 P 结构域在弱内向整流钾(K+)通道 1(TWIK1)是一种钾通道,产生异常低水平的电流。赖氨酸 274 被谷氨酸(K274E)取代与更强的电流有关。这种突变会阻止小泛素修饰肽与赖氨酸 274 的共轭,这一机制被认为是导致通道沉默的原因。然而,我们没有发现 TWIK1 泛素化的生化证据,并且我们表明保守的变化 K274R 不会增加电流,这表明 K274E 通过电荷效应修饰 TWIK1 门控。现在我们排除了 K274E 对 TWIK1 运输的最终影响,并且我们提供了令人信服的证据表明 TWIK1 沉默是由于其从细胞表面的快速回收。TWIK1 通过依赖于 dynamin 的机制内化,并被定向到再循环内体隔室。位于其细胞质 C 末端的二异亮氨酸重复(I293A,I294A)的突变稳定了 TWIK1 在质膜上,导致强大的电流。I293A,I294A 对通道运输的影响和 K274E 对通道活性的影响是累积的,促进了更多的电流。5-羟色胺能受体 5-HT(1)R 或肾上腺素能受体 alpha2A-AR 的激活刺激 TWIK1,但对 TWIK1I293A,I294A 没有影响,这表明 G(i) 蛋白的激活是增加质膜上活性通道数量的生理信号。

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