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The C-terminal helical bundle of the tetrameric prokaryotic sodium channel accelerates the inactivation rate

机译:四聚体原核钠通道的C末端螺旋束加速失活速率

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摘要

Most tetrameric channels have cytosolic domains to regulate their functions, including channel inactivation. Here we show that the cytosolic C-terminal region of NavSulP, a prokaryotic voltage-gated sodium channel cloned from Sulfitobacter pontiacus, accelerates channel inactivation. The crystal structure of the C-terminal region of NavSulP grafted into the C-terminus of a NaK channel revealed that the NavSulP C-terminal region forms a four-helix bundle. Point mutations of the residues involved in the intersubunit interactions of the four-helix bundle destabilized the tetramer of the channel and reduced the inactivation rate. The four-helix bundle was directly connected to the inner helix of the pore domain, and a mutation increasing the rigidity of the inner helix also reduced the inactivation rate. These findings suggest that the NavSulP four-helix bundle has important roles not only in stabilizing the tetramer, but also in accelerating the inactivation rate, through promotion of the conformational change of the inner helix.
机译:大多数四聚体通道具有胞质结构域以调节其功能,包括通道失活。在这里,我们显示了NavSulP的胞质C末端区域,即从桥兰硫杆菌中克隆的原核电压门控钠通道,可加速通道失活。 NavSulP的C末端区域嫁接到NaK通道的C末端的晶体结构表明NavSulP的C末端区域形成四螺旋束。参与四螺旋束亚基间相互作用的残基的点突变使通道的四聚体不稳定并降低了失活率。四螺旋束直接连接到孔结构域的内部螺旋,增加内部螺旋刚性的突变也降低了失活率。这些发现表明,NavSulP四螺旋束不仅在稳定四聚体方面具有重要作用,而且还通过促进内螺旋的构象变化在加速失活速率方面具有重要作用。

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