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Insights into the structural nature of the transition state in the Kir channel gating pathway

机译:洞悉Kir通道门控通道中过渡态的结构性质

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摘要

In a previous study we identified an extensive gating network within the inwardly rectifying Kir1.1 (ROMK) channel by combining systematic scanning mutagenesis and functional analysis with structural models of the channel in the closed, pre-open and open states. This extensive network appeared to stabilize the open and pre-open states, but the network fragmented upon channel closure. In this study we have analyzed the gating kinetics of different mutations within key parts of this gating network. These results suggest that the structure of the transition state (TS), which connects the pre-open and closed states of the channel, more closely resembles the structure of the pre-open state. Furthermore, the G-loop, which occurs at the center of this extensive gating network, appears to become unstructured in the TS because mutations within this region have a ‘catalytic’ effect upon the channel gating kinetics.
机译:在先前的研究中,我们通过将系统扫描诱变和功能分析与处于封闭,开放前和开放状态下的通道结构模型相结合,在向内整流Kir1.1(ROMK)通道中确定了一个广泛的门控网络。这个广泛的网络似乎稳定了打开和打开前的状态,但是网络在通道关闭时变得支离破碎。在这项研究中,我们分析了该门控网络关键部分内不同突变的门控动力学。这些结果表明,连接通道的预打开和关闭状态的过渡状态(TS)的结构更类似于预打开状态的结构。此外,出现在这个广泛的门控网络中心的G环似乎在TS中变得没有结构,因为该区域内的突变对通道门控动力学具有“催化”作用。

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