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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Voltage gating and anions, especially phosphate: A model system
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Voltage gating and anions, especially phosphate: A model system

机译:电压门控和阴离子,尤其是磷酸盐:模型系统

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摘要

The voltage sensor of voltage gated sodium and potassium channels consists of four sets of transmembrane segments, of which one, called S4, contains at least four arginines; these are presumed to each carry positive charges. The channel opening is usually attributed to the outward (i.e., toward the extracellular side of the membrane) motion of S4. The evidence for this motion is based on certain experiments that appear to show differential access to parts of S4 from the intracellular and extracellular sides of the membrane in the open and closed states. A newly available structure [S.B. Long, E.B. Campbell and R. MacKinnon, Crystal structure of a mammalian voltage-dependent Shaker family K+ channel. Science 309 (2005) 897-903; S.B. Long, E.B. Campbell, R. MacKinnon, Voltage sensor of Kvl.2: structural basis of electromechanical coupling. Science 309 (2005) 903-908][1,2] has now been used to argue for a large scale motion, although, as a static structure, it is not conclusive. In this paper, we consider the effect of anions in the surrounding medium. Phosphate is present in the intracellular as well as the extracellular fluid, apparently at hundreds of micromolar concentration, or more. There is evidence in the literature suggesting that phosphate-arginine complexes are rather strong. In a recent calculation one of us [M.E. Green, A possible role for phosphate in complexing the arginines of S4 in voltage gated channels. J. Theor. Biol. 233 (2005) 337-341][3] has shown that a model peptide with a 2:1 arg:phosphate complex should have a favorable geometry. Here, we present NMR evidence of the existence of phosphate complexes of a model peptide with two arginines separated by two hydrophobic residues, the same spacing as in S4 segments. The complexes (there are different complexes for H-4(2-) and for H2PO4- [3]) form with concentrations of peptide in the range of hundreds of micromolar, making it significant in the biological context. NW spectra provide changes in chemical shift as functions of both phosphate concentration and pH. The resulting curves show titration of the phosphate, with its standard pK. Possible implications for other anion-S4 interactions, including ion pairs rather than complexes, as with Cl-, are also discussed. (c) 2005 Elsevier B.V. All rights reserved.
机译:电压门控钠通道和钾通道的电压传感器由四组跨膜片段组成,其中一组称为S4,至少包含四个精氨酸。这些被推定为每个携带正电荷。通道的开放通常归因于S4的向外(即朝向膜的细胞外侧)运动。该运动的证据是基于某些实验的,这些实验似乎显示了在打开和关闭状态下,从膜的细胞内和细胞外侧进入S4部分的差异。一种新的可用结构[S.B.龙,E.B。坎贝尔(Campbell)和麦金农(R. MacKinnon),哺乳动物电压依赖性摇床家族K +通道的晶体结构。科学309(2005)897-903; S.B.龙,E.B。 Campbell,R。MacKinnon,Kvl.2的电压传感器:机电耦合的结构基础。尽管作为静态结构,它尚无定论,但现在已使用Science 309(2005)903-908] [1,2]来争论大规模运动。在本文中,我们考虑了阴离子在周围介质中的作用。磷酸盐存在于细胞内以及细胞外液中,显然浓度为数百微摩尔或更高。文献中有证据表明,磷酸精氨酸复合物很强。在我们最近的计算中[M.E.绿色,磷酸盐可能在电压门控通道中络合S4的精氨酸。 J.理论。生物学233(2005)337-341] [3]显示具有2:1 arg:磷酸盐复合物的模型肽应具有良好的几何形状。在这里,我们提供了NMR证据,表明存在一种模型肽的磷酸盐复合物,其中两个精氨酸被两个疏水残基隔开,间距与S4段中的间距相同。配合物(H-4(2-)和H2PO4- [3]有不同的配合物)形式,其肽的浓度在数百微摩尔的范围内,使其在生物学上具有重要意义。 NW光谱提供了化学位移随磷酸盐浓度和pH值变化的变化。所得曲线显示以标准pK滴定的磷酸盐。还讨论了其他阴离子与S4相互作用的可能含义,包括离子对而非络合物(如Cl-)。 (c)2005 Elsevier B.V.保留所有权利。

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