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首页> 外文期刊>Neuron >The voltage-gated proton channel Hv1 has two pores, each controlled by one voltage sensor.
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The voltage-gated proton channel Hv1 has two pores, each controlled by one voltage sensor.

机译:电压门控质子通道Hv1具有两个孔,每个孔由一个电压传感器控制。

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摘要

In voltage-gated channels, ions flow through a single pore located at the interface between membrane-spanning pore domains from each of four subunits, and the gates of the pore are controlled by four peripheral voltage-sensing domains. In a striking exception, the newly discovered voltage-gated Hv1 proton channels lack a homologous pore domain, leaving the location of the pore unknown. Also unknown are the number of subunits and the mechanism of gating. We find that Hv1 is a dimer and that each subunit contains its own pore and gate, which is controlled by its own voltage sensor. Our experiments show that the cytosolic domain of the channel is necessary and sufficient for dimerization and that the transmembrane part of the channel is functional also when monomerized. The results suggest a mechanism of gating whereby the voltage sensor and gate are one and the same.
机译:在电压门控通道中,离子从四个亚基中的每一个流过位于跨膜孔域之间界面的单个孔,并且孔的栅极由四个外围电压感测域控制。一个引人注目的例外是,新发现的电压门控Hv1质子通道缺乏同源的孔结构域,从而使孔的位置未知。亚单位的数目和门控的机制也是未知的。我们发现Hv1是一个二聚体,每个亚基都包含自己的孔和门,并由自己的电压传感器控制。我们的实验表明,通道的胞质结构域对于二聚化是必要且足够的,并且单体化时通道的跨膜部分也具有功能。结果表明门控机制,其中电压传感器和栅极是相同的。

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