首页> 美国卫生研究院文献>The Journal of General Physiology >Molecular Template for a Voltage Sensor in a Novel K+ Channel. II. Conservation of a Eukaryotic Sensor Fold in a Prokaryotic K+ Channel
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Molecular Template for a Voltage Sensor in a Novel K+ Channel. II. Conservation of a Eukaryotic Sensor Fold in a Prokaryotic K+ Channel

机译:新型K +通道中电压传感器的分子模板。二。真核传感器折叠在原核K +通道中的守恒。

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摘要

KvLm, a novel bacterial depolarization-activated K+ (Kv) channel isolated from the genome of Listeria monocytogenes, contains a voltage sensor module whose sequence deviates considerably from the consensus sequence of a Kv channel sensor in that only three out of eight conserved charged positions are present. Surprisingly, KvLm exhibits the steep dependence of the open channel probability on membrane potential that is characteristic of eukaryotic Kv channels whose sensor sequence approximates the consensus. Here we asked if the KvLm sensor shared a similar fold to that of Shaker, the archetypal eukaryotic Kv channel, by examining if interactions between conserved residues in Shaker known to mediate sensor biogenesis and function were conserved in KvLm. To this end, each of the five non-conserved residues in the KvLm sensor were mutated to their Shaker-like charged residues, and the impact of these mutations on the voltage dependence of activation was assayed by current recordings from excised membrane patches of Escherichia coli spheroplasts expressing the KvLm mutants. Conservation of pairwise interactions was investigated by comparison of the effect of single mutations to the impact of double mutations presumed to restore wild-type fold and voltage sensitivity. We observed significant functional coupling between sites known to interact in Shaker Kv channels, supporting the notion that the KvLm sensor largely retains the fold of its eukaryotic homologue.
机译:从单核细胞增生性李斯特菌基因组中分离出的新型细菌去极化激活的K + (Kv)通道KvLm包含电压传感器模块,该模块的序列与Kv通道传感器的共有序列有很大出入存在八个保守的带电职位中的三个。出人意料的是,KvLm表现出开放通道概率对膜电位的强烈依赖性,而膜电位是真核Kv通道的特征,其传感器序列接近共有序列。在这里,我们通过检查已知可介导传感器生物发生和功能的振荡器中保守残基之间的相互作用在KvLm中是否保守,来询问KvLm传感器是否与原型真核Kv通道Shaker具有相似的折叠倍数。为此,将KvLm传感器中的五个非保守残基中的每一个突变为它们的振动器状带电残基,并通过从大肠杆菌切下的膜片上记录的电流来分析这些突变对激活电压依赖性的影响。表达KvLm突变体的原生质球。通过比较单个突变的影响与假定恢复野生型折叠和电压敏感性的双重突变的影响进行比较,研究了成对相互作用的保守性。我们观察到已知在Shaker Kv通道中相互作用的位点之间存在显着的功能偶联,支持了KvLm传感器在很大程度上保留其真核同源物折叠的观点。

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