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第八跨膜片段对 CFTR 氯离子通道孔功能的贡献。

Contribution of the eighth transmembrane segment to the function of the CFTR chloride channel pore.

机构信息

Department of Physiology and Biophysics, Dalhousie University, PO Box 15000, Halifax, NS, B3H 4R2, Canada.

出版信息

Cell Mol Life Sci. 2019 Jun;76(12):2411-2423. doi: 10.1007/s00018-019-03043-2. Epub 2019 Feb 13.

Abstract

Our molecular understanding of the cystic fibrosis transmembrane conductance regulator (CFTR)-the chloride channel that is mutated in cystic fibrosis-has been greatly enhanced by a number of recent atomic-level structures of the protein in different conformations. One surprising aspect of these structures was the finding that the eighth of CFTR's 12 membrane-spanning segments (TM8) appeared close to the channel pore. Although functional evidence supports a role for other TMs in forming the pore, such a role for TM8 has not previously been reported. Here, we use patch-clamp recording to investigate the functional role of TM8. Using substituted cysteine accessibility mutagenesis, we find that three amino acid side-chains in TM8 (Y913, Y914, and Y917) are exposed to the extracellular, but not the intracellular, solution. Cysteine cross-linking experiments suggest that Y914 and Y917 are in close proximity to L102 (TM1) and F337 (TM6), respectively, suggesting that TM8 contributes to the narrow selectivity filter region of the pore. Different amino acid substitutions suggest that Y914, and to a lesser extent Y917, play important roles in controlling anion flux through the open channel. Furthermore, substitutions that reduce side-chain volume at Y917 severely affect channel gating, resulting in a channel with an extremely unstable open state. Our results suggest that pore-lining TM8 is among the most important TMs controlling the permeation phenotype of the CFTR channel, and also that movement of TM8 may be critically involved in channel gating.

摘要

我们对囊性纤维化跨膜电导调节因子(CFTR)的分子理解——该氯离子通道在囊性纤维化中发生突变——已经通过该蛋白在不同构象下的多个最近的原子水平结构得到了极大的增强。这些结构的一个令人惊讶的方面是发现 CFTR 的 12 个跨膜片段(TM8)中的第 8 个片段接近通道孔。尽管功能证据支持其他 TM 在形成孔中的作用,但 TM8 的这种作用以前没有报道过。在这里,我们使用膜片钳记录来研究 TM8 的功能作用。通过取代半胱氨酸可及性诱变,我们发现 TM8 中的三个氨基酸侧链(Y913、Y914 和 Y917)暴露于细胞外,但不暴露于细胞内溶液。半胱氨酸交联实验表明,Y914 和 Y917 分别与 TM1 的 L102 和 TM6 的 F337 接近,表明 TM8 有助于孔的狭窄选择性滤过区。不同的氨基酸取代表明 Y914,以及在较小程度上 Y917,在控制阴离子通过开放通道的流量方面起着重要作用。此外,减少 Y917 侧链体积的取代严重影响通道门控,导致具有极不稳定开放状态的通道。我们的结果表明,孔衬 TM8 是控制 CFTR 通道渗透表型的最重要 TM 之一,并且 TM8 的运动可能在通道门控中起关键作用。

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