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A lower X-gate in TASK channels traps inhibitors within the vestibule 期刊论文
NATURE, 2020
作者:  Chen, Tao;  Nomura, Kinya;  Wang, Xiaolin;  Sohrabi, Reza;  Xu, Jin;  Yao, Lingya;  Paasch, Bradley C.;  Ma, Li;  Kremer, James;  Cheng, Yuti;  Zhang, Li;  Wang, Nian;  Wang, Ertao;  Xin, Xiu-Fang;  He, Sheng Yang
收藏  |  浏览/下载:34/0  |  提交时间:2020/07/03

TWIK-related acid-sensitive potassium (TASK) channels-members of the two pore domain potassium (K-2P) channel family-are found in neurons(1), cardiomyocytes(2-4) and vascular smooth muscle cells(5), where they are involved in the regulation of heart rate(6), pulmonary artery tone(5,7), sleep/wake cycles(8) and responses to volatile anaesthetics(8-11). K-2P channels regulate the resting membrane potential, providing background K+ currents controlled by numerous physiological stimuli(12-15). Unlike other K-2P channels, TASK channels are able to bind inhibitors with high affinity, exceptional selectivity and very slow compound washout rates. As such, these channels are attractive drug targets, and TASK-1 inhibitors are currently in clinical trials for obstructive sleep apnoea and atrial fibrillation(16). In general, potassium channels have an intramembrane vestibule with a selectivity filter situated above and a gate with four parallel helices located below  however, the K-2P channels studied so far all lack a lower gate. Here we present the X-ray crystal structure of TASK-1, and show that it contains a lower gate-which we designate as an '  X-gate'  -created by interaction of the two crossed C-terminal M4 transmembrane helices at the vestibule entrance. This structure is formed by six residues ((VLRFMT248)-V-243) that are essential for responses to volatile anaesthetics(10), neurotransmitters(13) and G-protein-coupled receptors(13). Mutations within the X-gate and the surrounding regions markedly affect both the channel-open probability and the activation of the channel by anaesthetics. Structures of TASK-1 bound to two high-affinity inhibitors show that both compounds bind below the selectivity filter and are trapped in the vestibule by the X-gate, which explains their exceptionally low washout rates. The presence of the X-gate in TASK channels explains many aspects of their physiological and pharmacological behaviour, which will be beneficial for the future development and optimization of TASK modulators for the treatment of heart, lung and sleep disorders.


The X-ray crystal structure of the potassium channel TASK-1 reveals the presence of an X-gate, which traps small-molecule inhibitors in the intramembrane vestibule and explains their low washout rates from the channel.


  
Ground-based MAX-DOAS observations of tropospheric formaldehyde VCDs and comparisons with the CAMS model at a rural site near Beijing during APEC 2014 期刊论文
ATMOSPHERIC CHEMISTRY AND PHYSICS, 2019, 19 (5) : 3375-3393
作者:  Tian, Xin;  Xie, Pinhua;  Xu, Jin;  Wang, Yang;  Li, Ang;  Wu, Fengcheng;  Hu, Zhaokun;  Liu, Cheng;  Zhang, Qiong
收藏  |  浏览/下载:7/0  |  提交时间:2019/04/09
Urban river pollution control in developing countries 期刊论文
NATURE SUSTAINABILITY, 2019, 2 (3) : 158-160
作者:  Xu, Zuxin;  Xu, Jin;  Yin, Hailong;  Jin, Wei;  Li, Huaizheng;  He, Zhen
收藏  |  浏览/下载:12/0  |  提交时间:2020/08/19
The structure and function of the global citrus rhizosphere microbiome 期刊论文
NATURE COMMUNICATIONS, 2018, 9
作者:  Xu, Jin;  Zhang, Yunzeng;  Zhang, Pengfan;  Trivedi, Pankaj;  Riera, Nadia;  Wang, Yayu;  Liu, Xin;  Fan, Guangyi;  Tang, Jiliang;  Coletta-Filho, Helvecio D.;  Cubero, Jaime;  Deng, Xiaoling;  Ancona, Veronica;  Lu, Zhanjun;  Zhong, Balian;  Roper, M. Caroline;  Capote, Nieves;  Catara, Vittoria;  Pietersen, Gerhard;  Verniere, Christian;  Al-Sadi, Abdullah M.;  Li, Lei;  Yang, Fan;  Xu, Xun;  Wang, Jian;  Yang, Huanming;  Jin, Tao;  Wang, Nian
收藏  |  浏览/下载:8/0  |  提交时间:2019/11/27
地面沉降流固耦合模型的高效计算与反演方法研究 项目
项目编号:41602284; 经费:180000(CNY); 起止日期:2017 / dc_date_end
项目负责人:  徐进
收藏  |  浏览/下载:1/0  |  提交时间:2019/04/11
页岩油赋存及运移孔径下限的纳米多孔材料模拟研究 项目
项目编号:41602159; 经费:200000(CNY); 起止日期:2017 / dc_date_end
项目负责人:  金旭
收藏  |  浏览/下载:0/0  |  提交时间:2019/04/11
基于权重函数修正的大气CO2垂直柱浓度遥测算法研究 项目
项目编号:41405033; 经费:250000(CNY); 起止日期:2015 / dc_date_end
项目负责人:  徐晋
收藏  |  浏览/下载:14/0  |  提交时间:2019/04/11