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上皮钠离子通道孔区域的单点突变通过改变分子筛分作用来改变离子选择性。

A single point mutation in the pore region of the epithelial Na+ channel changes ion selectivity by modifying molecular sieving.

作者信息

Kellenberger S, Gautschi I, Schild L

机构信息

Institut de Pharmacologie et de Toxicologie, Université de Lausanne, CH-1005 Lausanne, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 1999 Mar 30;96(7):4170-5. doi: 10.1073/pnas.96.7.4170.

Abstract

The epithelial Na+ channel (ENaC) belongs to a new class of channel proteins called the ENaC/DEG superfamily involved in epithelial Na+ transport, mechanotransduction, and neurotransmission. The role of ENaC in Na+ homeostasis and in the control of blood pressure has been demonstrated recently by the identification of mutations in ENaC beta and gamma subunits causing hypertension. The function of ENaC in Na+ reabsorption depends critically on its ability to discriminate between Na+ and other ions like K+ or Ca2+. ENaC is virtually impermeant to K+ ions, and the molecular basis for its high ionic selectivity is largely unknown. We have identified a conserved Ser residue in the second transmembrane domain of the ENaC alpha subunit (alphaS589), which when mutated allows larger ions such as K+, Rb+, Cs+, and divalent cations to pass through the channel. The relative ion permeability of each of the alphaS589 mutants is related inversely to the ionic radius of the permeant ion, indicating that alphaS589 mutations increase the molecular cutoff of the channel by modifying the pore geometry at the selectivity filter. Proper geometry of the pore is required to tightly accommodate Na+ and Li+ ions and to exclude larger cations. We provide evidence that ENaC discriminates between cations mainly on the basis of their size and the energy of dehydration.

摘要

上皮钠通道(ENaC)属于一类新的通道蛋白,即参与上皮钠转运、机械转导和神经传递的ENaC/DEG超家族。最近,通过鉴定导致高血压的ENaCβ和γ亚基突变,证实了ENaC在钠稳态和血压控制中的作用。ENaC在钠重吸收中的功能关键取决于其区分钠与其他离子(如钾离子或钙离子)的能力。ENaC实际上对钾离子不通透,其高离子选择性的分子基础在很大程度上尚不清楚。我们在ENaCα亚基的第二个跨膜结构域中鉴定出一个保守的丝氨酸残基(αS589),当该残基发生突变时,会使钾离子、铷离子、铯离子和二价阳离子等较大离子能够通过该通道。每个αS589突变体的相对离子通透性与通透离子的离子半径呈反比,这表明αS589突变通过改变选择性过滤器处的孔几何形状增加了通道的分子截止值。需要合适的孔几何形状来紧密容纳钠离子和锂离子,并排除较大的阳离子。我们提供的证据表明,ENaC主要根据阳离子的大小和脱水能来区分它们。

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