The structural mechanism of KCNH-channel regulation by the eag domain

被引:90
作者
Haitin, Yoni [1 ]
Carlson, Anne E. [1 ]
Zagotta, William N. [1 ]
机构
[1] Univ Washington, Sch Med, Dept Physiol & Biophys, Seattle, WA 98195 USA
基金
美国国家卫生研究院;
关键词
LONG-QT SYNDROME; HERG POTASSIUM CHANNELS; AMINO-TERMINAL DOMAIN; HUMAN-ETHER; MUTATIONS; DROSOPHILA; DEACTIVATION; PHYSIOLOGY; BINDING; REGION;
D O I
10.1038/nature12487
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The KCNH voltage-dependent potassium channels (ether-a-go-go, EAG; EAG-related gene, ERG; EAG-like channels, ELK) are important regulators of cellular excitability(1-3) and have key roles in diseases such as cardiac long QT syndrome type 2 (LQT2)(4), epilepsy(5), schizophrenia(6) and cancer(7). The intracellular domains of KCNH channels are structurally distinct from other voltage-gated channels. The amino-terminal region contains an eag domain, which is composed of a Per-Arnt-Sim (PAS) domain and aPAS-cap domain(8), whereas the carboxy-terminal region contains a cyclic nucleotide-binding homology domain (CNBHD), which is connected to the pore through a C-linker domain. Many disease-causing mutations localize to these specialized intracellular domains, which underlie the unique gating and regulation of KCNH channels(9). It has been suggested that the eag domain may regulate the channel by interacting with either the S4-S5 linker or the CNBHD8,10. Here we present a 2 angstrom resolution crystal structure of the eag domain-CNBHD complex of themouse EAG1 (also known as KCNH1) channel. It displays extensive interactions between the eag domain and the CNBHD, indicating that the regulatory mechanism of the eag domain primarily involves the CNBHD. Notably, the structure reveals that a number of LQT2 mutations at homologous positions in human ERG, in addition to cancer-associated mutations in EAG channels, localize to the eag domain-CNBHD interface. Furthermore, mutations at the interface produced marked effects on channel gating, demonstrating the important physiological role of the eag domain-CNBHD interaction. Our structure of the eag domain-CNBHD complex of mouse EAG1 provides unique insights into the physiological and pathophysiological mechanisms of KCNH channels.
引用
收藏
页码:444 / +
页数:6
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