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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Thermal and chemical unfolding and refolding of a eukaryotic sodium channel.
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Thermal and chemical unfolding and refolding of a eukaryotic sodium channel.

机译:真核钠通道的热化学折叠和重折叠。

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Voltage-gated sodium channels are dynamic membrane proteins essential for signaling in nervous and muscular systems. They undergo substantial conformational changes associated with the closed, open and inactivated states. However, little information is available regarding their conformational stability. In this study circular dichroism spectroscopy was used to investigate the changes in secondary structure accompanying chemical and thermal denaturation of detergent-solubilised sodium channels isolated from Electrophorus electricus electroplax. The proteins appear to be remarkably resistant to either type of treatment, with "denatured" channels, retaining significant helical secondary structure even at 77 degrees C or in 10% SDS. Further retention of helical secondary structure at high temperature was observed in the presence of the channel-blocking tetrodotoxin. It was possible to refold the thermally-denatured (but not chemically-denatured) channels in vitro. The correctly refolded channels were capable of undergoing the toxin-induced conformational change indicative of ligand binding. In addition, flux measurements in liposomes showed that the thermally-denatured (but not chemically-denatured) proteins were able to re-adopt native, active conformations. These studies suggest that whilst sodium channels must be sufficiently flexible to undergo major conformational changes during their functional cycle, the proteins are highly resistant to unfolding, a feature that is important for maintaining structural integrity during dynamic processes.
机译:电压门控钠通道是动态膜蛋白,对于神经和肌肉系统的信号传导至关重要。它们经历与闭合,打开和失活状态相关的实质性构象变化。但是,关于其构象稳定性的信息很少。在这项研究中,使用圆二色光谱研究了从电泳电泳分离的去污剂溶解的钠通道的化学和热变性引起的二级结构的变化。蛋白质似乎对两种类型的处理都具有显着的抗性,带有“变性”通道,即使在77摄氏度或10%SDS中也保留了明显的螺旋二级结构。在存在通道阻滞河豚毒素的情况下,观察到螺旋二级结构在高温下进一步保留。可以在体外重折叠热变性(但不是化学变性)通道。正确重新折叠的通道能够经历毒素诱导的构象变化,表明配体结合。此外,脂质体的通量测量表明,热变性(但不是化学变性)的蛋白质能够重新采用天然的活性构象。这些研究表明,尽管钠通道必须具有足够的柔韧性才能在其功能周期中经历主要的构象变化,但蛋白质对展开具有高度的抵抗力,这一特征对于在动态过程中保持结构完整性很重要。

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