首页> 外文期刊>The Journal of Physiology >Molecular mechanisms of Slo2 K+ channel closure
【24h】

Molecular mechanisms of Slo2 K+ channel closure

机译:SLO2 K +通道闭合的分子机制

获取原文
获取原文并翻译 | 示例
           

摘要

Large conductance K+-selective Slo2 channels are in a closed state unless activated by elevated [Na+](i). Our previous studies suggested that the pore helix/selectivity filter serves as the activation gate in Slo2 channels. In the present study, we evaluated two other potential mechanisms for stabilization of Slo2 channels in a closed state: (1) dewetting and collapse of the inner pore (hydrophobic gating) and (2) constriction of the inner pore by tight criss-crossing of the cytoplasmic ends of the S6 -helical segments. Slo2 channels contain two conserved Leu residues in each of the four S6 segments that line the inner pore region nearest the bottom of the selectivity filter. To evaluate the potential role of these residues in hydrophobic gating, Leu267 and Leu270 in human Slo2.1 were each replaced by 15 different residues. The relative conductance of mutant channels was highly dependent on hydrophilicity and volume of the amino acid substituted for Leu267 and was maximal with L267H. Consistent with their combined role in hydrophobic gating, replacement of both Leu residues with the isosteric but polar residue Asn (L267N/L270N) stabilized channels in a fully open state. In a recent cryo-electron microscopy structure of chicken Slo2.2, the ion permeation pathway of the channel is closed by a constriction of the inner pore formed by criss-crossing of the S6 segments at a conserved Met. Inconsistent with the S6 segment crossing forming the activation gate, replacement of the homologous Met residues in human Slo2.1 or Slo2.2 with the negatively-charged Glu did not induce constitutive channel opening.
机译:除非通过升高的[Na +](i)激活,否则大电导k + -selective slo2通道处于关闭状态。我们以前的研究表明,孔螺旋/选择性过滤器用作SLO2通道中的激活栅极。在本研究中,我们评估了另外两种潜在机制,以闭合状态稳定SLO2通道:(1)内孔(疏水门)的脱模和坍塌,(2)通过紧密的裂纹交叉通过紧密的裂纹交叉S6的细胞质末端 - Helical Segments。 SLO2通道在四个S6段中的每一个中包含两个保守的LEU残留物,该筛网排列在最近的选择性滤波器底部的内孔区域。为了评估这些残留物在疏水门中的潜在作用,人SLO2.1中的Leu267和Leu270各自取代15种不同的残基。突变通道的相对电导高度依赖于对Leu267取代的氨基酸的亲水性和体积,并用L267H最大化。与其在疏水门中的组合作用一致,用稳定状态置换与基位的稳定性通道的稳定性通道的液体残留物。在最近的鸡肉SLO2.2的冷冻电子显微镜结构中,通道的离子渗透途径通过通过在保守的遇到的S6区段的纵横交口形成的内孔的收缩而关闭。与形成活化栅极的S6段交叉的速度不一致,用带负电的Glu替换人SLO2.1或SLO2.2中的同源达残留物没有诱导组成型通道开口。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号