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Insight into the selectivity and gating functions of Streptomyces lividans KcsA

机译:洞察力链霉菌KcsA的选择性和门控功能

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Streptomyces lividans KcsA is a 160-aa polypeptide that oligomerizes to form a tetrameric potassium channel. The three-dimensional structure of the polypeptides has been established, but the selectivity and gating functions of the channel remain unclear. It has been shown that the polypeptides copurify with two homopolymers, poly[(R)-3-hydroxybutyrate] (PHB) and inorganic polyphos-phate (polyP), which have intrinsic capacities for cation selection and transport. PHB/polyP complexes are highly selective for divalent cations when pH is greater than the pK_2 of polyP (≈6.8), but this preference is lost when pH is ≤ pK_2. It is postulated that KcsA polypeptides attenuate the divalent negative charge of the polyP end unit at physiological pH by strategic positioning of two C-terminal arginines. Here we mutate one or both of the C-terminal arginines and observe the effects on channel selectivity in planar lipid bilayers. We find that channels formed by KcsA polypeptides that retain a single C-terminal arginine remain highly selective for K~+ over Mg~(2+), independent of medium pH; however, channels formed by KcsA polypeptides in which both C-terminal arginines have been replaced with neutral residues are selective for Mg~(2+) when pH is > 7 and for K~+ when pH is < 7. Channel gating may be triggered by changes in the balance between the K~+ polyP~-binding energy, the membrane potential, and the gradient force. The results reveal the importance of the C-terminal arginines to K~+ selectivity and argue for a supramolecular structure for KcsA in which the host polypeptides modify the cation preference of a guest PHB/polyP complex.
机译:Lividans链霉菌KcsA是160-aa多肽,可寡聚形成四聚体钾通道。多肽的三维结构已经建立,但是通道的选择性和门控功能仍然不清楚。已经显示出该多肽与两种均聚物,即具有[阳离子选择和运输的固有能力]的聚[(R)-3-羟基丁酸酯](PHB)和无机聚磷酸盐(polyP)共纯化。当pH值大于polyP的pK_2(≈6.8)时,PHB / polyP络合物对二价阳离子具有高度选择性,但是当pH≤pK_2时,这种偏好会消失。推测在生理pH下,KcsA多肽通过两个C-末端精氨酸的战略定位而减弱了polyP末端单元的二价负电荷。在这里,我们突变一个或两个C末端精氨酸,并观察对平面脂质双层中通道选择性的影响。我们发现,由保留单个C末端精氨酸的KcsA多肽形成的通道对M +〜(2+)上的K〜+仍具有高度选择性,而与中等pH无关。然而,由KcsA多肽形成的通道(其中两个C端精氨酸均被中性残基取代)在pH值大于7时对Mg〜(2+)具有选择性,而在pH值小于7时对K +具有选择性。通过改变K〜+ polyP〜结合能,膜电位和梯度力之间的平衡。结果揭示了C末端精氨酸对K +选择性的重要性,并提出了KcsA的超分子结构,其中宿主多肽修饰了客体PHB / polyP复合物的阳离子偏好。

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