Hyperpolarization-activated cyclic nucleotide-gated (HCN) channels (h channels) form the molecular basis for the hyperpolarization-activated current, I(h), and modulation of h channels contributes to changes in cellular properties critical for normal functions in the mammalian brain and heart. Numerous mechanisms underlie h channel modulation during both physiological and pathological conditions, leading to distinct changes in gating, kinetics, surface expression, channel conductance or subunit composition of h channels. Here we provide a focused review examining mechanisms of h channel regulation, with an emphasis on recent findings regarding interacting proteins such as TRIP8b. This review is intended to serve as a comprehensive resource for physiologists to provide potential molecular mechanisms underlying functionally important changes in I(h) in different biological models, as well as for molecular biologists to delineate the predicted h channel changes associated with complex regulatory mechanisms in both normal function and in disease states.
The fast and slow ups and downs of HCN channel regulation.
HCN通道调控的快速和缓慢的波动
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作者:Lewis Alan S, Estep Chad M, Chetkovich Dane M
| 期刊: | Channels | 影响因子: | 3.200 |
| 时间: | 2010 | 起止号: | 2010 May-Jun;4(3):215-31 |
| doi: | 10.4161/chan.4.3.11630 | ||
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