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A widened substrate selectivity filter of eukaryotic formate-nitrite transporters enables high-level lactate conductance

机译:真核甲酸盐 - 亚硝酸盐转运蛋白的加宽底物选择性过滤器能够实现高水平的乳酸液

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Bacterial formate-nitrite transporters (FNT) regulate the metabolic flow of small weak mono-acids derived from anaerobic mixed-acid fermentation, such as formate, and further transport nitrite and hydrosulfide. The eukaryotic Plasmodium falciparum FNT is vital for the malaria parasite by its ability to release the larger L-lactate substrate as the metabolic end product of anaerobic glycolysis in symport with protons preventing cytosolic acidification. However, the molecular basis for substrate discrimination by FNTs has remained unclear. Here, we identified a size-selective FNT substrate filter region around an invariant lysine at the bottom of the periplasmic/extracellular vestibule. The selectivity filter is reminiscent of the aromatic/arginine constriction of aquaporin water and solute channels regarding composition, location in the protein, and the size-selection principle. Bioinformatics support an adaptation of the eukaryotic FNT selectivity filter to accommodate larger physiologically relevant substrates. Mutations that affect the diameter at the filter site predictably modulated substrate selectivity. The shape of the vestibule immediately above the filter region further affects selectivity. This study indicates that eukaryotic FNTs evolved to transport larger mono-acid substrates, especially L-lactic acid as a product of energy metabolism.
机译:细菌甲酸盐 - 亚硝酸盐转运蛋白(FNT)调节衍生自厌氧混合酸发酵的小弱单酸的代谢流,例如甲酸盐,进一步运输亚硝酸盐和氢硫化物。真核疟原虫FNT对疟疾寄生虫的能力至关重要,通过其释放较大的L-乳酸底物作为厌氧糖酵解在羟基溶解中的质量反应中的质量酸化,防止细胞溶化酸化。然而,FNT的基材鉴别的分子基础仍然不清楚。这里,我们在周质/细胞外前庭的底部围绕不变赖氨酸鉴定了尺寸选择性的Fnt衬底滤光区。选择性过滤器使Aquaporin水和溶质通道的芳族/精氨酸收缩成为关于组合物,蛋白质中的位置的溶质/精氨酸的收缩以及尺寸选择原理。生物信息学支持真核FNT选择性过滤器的适应,以适应更大的生理学相关的基材。影响滤波器位点的直径可预测地调制衬底选择性的突变。紧接在滤波器区域上方的前庭的形状进一步影响选择性。该研究表明,真核FNT演化以转运较大的单酸基材,尤其是L-乳酸作为能量代谢的产物。

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