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Proton movement and coupling in the POT family of peptide transporters

机译:POT肽转运蛋白家族中的质子运动和偶联

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摘要

POT transporters represent an evolutionarily well-conserved family of proton-coupled transport systems in biology. An unusual feature of the family is their ability to couple the transport of chemically diverse ligands to an inwardly directed proton electrochemical gradient. For example, in mammals, fungi, and bacteria they are predominantly peptide transporters, whereas in plants the family has diverged to recognize nitrate, plant defense compounds, and hormones. Although recent structural and biochemical studies have identified conserved sites of proton binding, the mechanism through which transport is coupled to proton movement remains enigmatic. Here we show that different POT transporters operate through distinct proton-coupled mechanisms through changes in the extracellular gate. A high-resolution crystal structure reveals the presence of ordered water molecules within the peptide binding site. Multiscale molecular dynamics simulations confirm proton transport occurs through these waters via Grotthuss shuttling and reveal that proton binding to the extracellular side of the transporter facilitates a reorientation from an inward- to outward-facing state. Together these results demonstrate that within the POT family multiple mechanisms of proton coupling have likely evolved in conjunction with variation of the extracellular gate.
机译:POT转运蛋白代表了生物学上质子偶联转运系统的进化上保守的家族。该家族的一个不寻常的特征是它们能够将化学上不同的配体的运输耦合到向内的质子电化学梯度上。例如,在哺乳动物,真菌和细菌中,它们主要是肽转运蛋白,而在植物中,该家族已分化为识别硝酸盐,植物防御化合物和激素。尽管最近的结构和生化研究已经确定了质子结合的保守位点,但运输与质子运动耦合的机制仍然是个谜。在这里,我们显示了不同的POT转运蛋白通过细胞外门​​的变化,通过不同的质子偶联机制进行操作。高分辨率晶体结构揭示了肽结合位点内有序水分子的存在。多尺度分子动力学模拟证实了质子通过格罗特斯穿梭而在这些水域中发生传输,并揭示了质子与转运蛋白细胞外侧面的结合促进了从向内到向外状态的重新定向。这些结果共同证明,在POT家族中,质子偶联的多种机制可能随着细胞外门的变化而发展。

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