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G219S mutagenesis as a means of stabilizing conformational flexibility in the bacterial sodium channel NaChBac.

机译:G219S诱变是稳定细菌钠通道NaChBac中构象柔韧性的一种手段。

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摘要

The NaChBac sodium channel from Bacillus halodurans is a homologue of eukaryotic voltage-gated sodium channels. It can be solubilized in a range of detergents and consists of four identical subunits assembled as a tetramer. Sodium channels are relatively flexible molecules, adopting different conformations in their closed, open and inactivated states. This study aimed to design and construct a mutant version of the NaChBac protein that would insert into membranes and retain its folded conformation, but which would have enhanced stability when subjected to thermal stress. Modelling studies suggested a G219S mutant would have decreased conformational flexibility due to the removal of the glycine hinge around the proposed gating region, thereby imparting increased resistance to unfolding. The mutant expressed in Escherichia coli and purified in the detergent dodecyl maltoside was compared to wildtype NaChBac prepared in a similar manner. The mutant was incorporated into the membrane fraction and had a nearly identical secondary structure to the wildtype protein. When the thermal unfolding of the G219S mutant was examined by circular dichroism spectroscopy, it was shown to not only have a Tm approximately 10 degrees C higher than the wildtype, but also in its unfolded state it retained more ordered helical structure than did the wildtype protein. Hence the G219S mutant was shown to be, as designed, more thermally stable.
机译:嗜盐芽孢杆菌的NaChBac钠通道是真核电压门控钠通道的同源物。它可以溶解在一系列去污剂中,并由四个相同的亚单元组装成四聚体。钠通道是相对柔性的分子,在其闭合,开放和失活状态下采用不同的构象。这项研究旨在设计和构建NaChBac蛋白的突变体,该突变体将插入膜中并保留其折叠构象,但在承受热应力时具有增强的稳定性。模型研究表明,由于去除了拟议中的门控区域周围的甘氨酸铰链,G219S突变体的构象柔韧性降低了,从而增强了抗折叠性。将在大肠杆菌中表达并在去污剂十二烷基麦芽糖苷中纯化的突变体与以类似方式制备的野生型NaChBac进行比较。该突变体被掺入到膜级分中,并且具有与野生型蛋白几乎相同的二级结构。当通过圆二色谱法检查G219S突变体的热解折叠时,它不仅具有比野生型高约10摄氏度的Tm,而且在其解折叠状态下比野生型蛋白保留了更多有序的螺旋结构。因此,按照设计,G219S突变体显示出更高的热稳定性。

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