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MOLECULAR ASPECTS OF VOLTAGE ACTIVATION IN ION CHANNELS

MOLECULAR ASPECTS OF VOLTAGE ACTIVATION IN ION CHANNELS
离子通道中电压激活的分子方面
批准号:
6386120
负责人:
ENRICO STEFANI
金额:
$37.59万
依托单位国家:
美国
项目类别:
财政年份:
1994
资助国家:
美国
项目状态:
已结题
起止时间:
1994-07-01 至 2003-06-30

项目摘要

项目成果

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中文摘要
翻译
这项提议的长期目标是深入了解电压如何
英文摘要
The long term goals of this proposal are to gain insight on how voltage dependent ion channels function in molecular terms, and to define the different protein conformational changes associated with transmembrane voltage changes and channel gating. Ionic currents and gating currents will be measured. The gating currents are the electrical manifestation of the movement of the voltage sensor. The experiments are planned for cloned K channels. Two main preliminary findings are key aspects of this proposal: 1. the discovery of an early peak component of charge movement recorded at high bandwidth (200 kHz) and 2. a tendency of gating current rates to saturate at extreme potentials. The early component and the tendency to saturation with voltage of gating current rates are consistent with the view the channel transits a large number of states, like in a diffusion process of the charge along an energy landscape shaped with barriers and wells. The specific aims are: 1. To investigate the early component of gating currents. ON and OFF gating currents were preceded by a fast component. 2. To investigate the mechanism underlying the tendency of gating current rates to saturate with voltage. The gating current rates tend to saturate at high potentials. A model in which the charge diffuses along an energy landscape shaped with barriers and wells will be tested. 3. To gain insight on channel function via a characterization of the gating current noise and to define the charged residues involved. The properties of gating noise will be investigated. 4. To investigate mechanism(s) of slow inactivation by a characterization of ionic and gating current properties during long depolarizations. We will test the hypothesis that there are two types of slow inactivation and 5. To obtain a global model of Shaker K channel function from ionic and gating current data. These determinations, in conjunction with gating current noise measurements, should provide well defined constraints for the prediction of the conformational changes occurring during channel gating. This research on fundamental properties of ion channel should be valuable to the design and test therapeutic drugs.
期刊论文(13)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1085/jgp.106.6.1069
发表时间: 1995-12
期刊: The Journal of general physiology
影响因子: --
作者: [Hurst RS, Latorre R, Toro L, Stefani E]
通讯作者: Stefani E
Fast inactivation of Shaker K+ channels is highly temperature dependent.
Shaker K 通道的快速失活高度依赖于温度。
DOI: 10.1007/pl00005613
发表时间: 1997
期刊: Experimental brain research
影响因子: 2
作者: [Nobile,M, Olcese,R, Toro,L, Stefani,E]
通讯作者: Stefani,E
Interaction of internal Ba2+ with a cloned Ca(2+)-dependent K+ (hslo) channel from smooth muscle.
内部BA2+与平滑肌的克隆Ca(2+) - 依赖性K+(HSLO)通道的相互作用。
DOI: 10.1085/jgp.107.3.399
发表时间: 1996-03
期刊: JOURNAL OF GENERAL PHYSIOLOGY
影响因子: 3.8
作者: [Diaz, F, Wallner, M, Stefani, E, Toro, L, Latorre, R]
通讯作者: Latorre, R
Fast inactivation in Shaker K+ channels. Properties of ionic and gating currents.
在振动振动器K+通道中快速失活。离子和门控电流的性质。
DOI: 10.1085/jgp.111.5.625
发表时间: 1998-05
期刊: JOURNAL OF GENERAL PHYSIOLOGY
影响因子: 3.8
作者: [Roux, MJ, Olcese, R, Toro, L, Bezanilla, F, Stefani, E]
通讯作者: Stefani, E
BK(Ca) channel in heart mitochondria
BK(Ca) channel in heart mitochondria
BK(Ca) channel in heart mitochondria
Novel interactions of Slo1 channel and Thromboxane A2 receptor in blood vessels
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