connexin26人类突变N14K破坏细胞质间亚基相互作用并促进通道打开。

The Journal of General Physiology Pub Date : 2019-03-04 Epub Date: 2018-12-07 DOI:10.1085/jgp.201812219
Juan M Valdez Capuccino, Payal Chatterjee, Isaac E García, Wesley M Botello-Smith, Han Zhang, Andrew L Harris, Yun Luo, Jorge E Contreras
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引用次数: 12

摘要

人类连接蛋白26 (Cx26)半通道n端(NT)区域的一组突变可产生异常的通道活性,从而导致耳聋和皮肤疾病,包括角膜炎-鱼鳞病-耳聋(KID)综合征。结构和功能研究表明,连接蛋白半通道的NT折叠到孔中,在孔中起着重要的渗透和门控作用。在这项研究中,我们探索了N14K(一个NT KID突变体)促进功能获得的分子基础。在宏观和单通道记录中,我们发现N14K突变体有利于半通道的开放构象,改变钙和电压敏感性,减缓失活动力学。对WT和N14K半通道进行多份MD模拟,然后对相互作用能分布进行Kolmogorov-Smirnov显著性检验(KS检验),结果表明N14K突变显著破坏了WT半通道中一个亚基的残基K15和相邻亚基的残基E101 (E101位于跨膜段2 [TM2]和细胞质环[CL]之间的过渡)之间的配对相互作用。双突变周期分析支持NT和WT半通道中TM2/CL转换之间的耦合,这在N14K突变半通道中被破坏。在MD轨迹上计算的α碳相关系数的KS测试表明,N14K突变的影响并不局限于K15-E101对,而是扩展到NT和TM2/CL界面之间的所有对残基相关。总之,我们的数据表明,N14K突变通过破坏NT和相邻连接蛋白亚基的TM2/CL区域之间的相互作用,增加了半通道打开的可能性。这表明NT-TM2/CL相互作用促进了Cx26半通道的关闭。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The connexin26 human mutation N14K disrupts cytosolic intersubunit interactions and promotes channel opening.

The connexin26 human mutation N14K disrupts cytosolic intersubunit interactions and promotes channel opening.

The connexin26 human mutation N14K disrupts cytosolic intersubunit interactions and promotes channel opening.

The connexin26 human mutation N14K disrupts cytosolic intersubunit interactions and promotes channel opening.

A group of human mutations within the N-terminal (NT) domain of connexin 26 (Cx26) hemichannels produce aberrant channel activity, which gives rise to deafness and skin disorders, including keratitis-ichthyosis-deafness (KID) syndrome. Structural and functional studies indicate that the NT of connexin hemichannels is folded into the pore, where it plays important roles in permeability and gating. In this study, we explore the molecular basis by which N14K, an NT KID mutant, promotes gain of function. In macroscopic and single-channel recordings, we find that the N14K mutant favors the open conformation of hemichannels, shifts calcium and voltage sensitivity, and slows deactivation kinetics. Multiple copies of MD simulations of WT and N14K hemichannels, followed by the Kolmogorov-Smirnov significance test (KS test) of the distributions of interaction energies, reveal that the N14K mutation significantly disrupts pairwise interactions that occur in WT hemichannels between residue K15 of one subunit and residue E101 of the adjacent subunit (E101 being located at the transition between transmembrane segment 2 [TM2] and the cytoplasmic loop [CL]). Double mutant cycle analysis supports coupling between the NT and the TM2/CL transition in WT hemichannels, which is disrupted in N14K mutant hemichannels. KS tests of the α carbon correlation coefficients calculated over MD trajectories suggest that the effects of the N14K mutation are not confined to the K15-E101 pairs but extend to essentially all pairwise residue correlations between the NT and TM2/CL interface. Together, our data indicate that the N14K mutation increases hemichannel open probability by disrupting interactions between the NT and the TM2/CL region of the adjacent connexin subunit. This suggests that NT-TM2/CL interactions facilitate Cx26 hemichannel closure.

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