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Dual and Direction-Selective Mechanisms of Phosphate Transport by the Vesicular Glutamate Transporter

机译:囊泡谷氨酸转运蛋白的双和方向选择机制磷酸盐输送

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摘要

Summary: Vesicular glutamate transporters (VGLUTs) fill synaptic vesicles with glutamate and are thus essential for glutamatergic neurotransmission. However, VGLUTs were originally discovered as members of a transporter subfamily specific for inorganic phosphate (Pi). It is still unclear how VGLUTs accommodate glutamate transport coupled to an electrochemical proton gradient ΔμH+ with inversely directed Pi transport coupled to the Na+ gradient and the membrane potential. Using both functional reconstitution and heterologous expression, we show that VGLUT transports glutamate and Pi using a single substrate binding site but different coupling to cation gradients. When facing the cytoplasm, both ions are transported into synaptic vesicles in a ΔμH+-dependent fashion, with glutamate preferred over Pi. When facing the extracellular space, Pi is transported in a Na+-coupled manner, with glutamate competing for binding but at lower affinity. We conclude that VGLUTs have dual functions in both vesicle transmitter loading and Pi homeostasis within glutamatergic neurons. : Preobraschenski et al. show that the vesicular glutamate transporter functions as a bi-directional phosphate transporter that is coupled with different cations in each direction and hence may play a key role in neuronal phosphate homeostasis. Keywords: VGLUT, SLC17 family, type I Na+-dependent inorganic phosphate transporter, ATPase, proteoliposomes, hybrid vesicles, anti-VGLUT1 nanobody
机译:总结:水泡性口谷氨酸转运(VGLUTs)填充突触小泡与谷氨酸和因此可用于谷氨酸能神经传递是必不可少的。然而,VGLUTs最初发现作为转运亚科特异于无机磷酸盐(PI)的成员。现在还不清楚如何VGLUTs容纳谷氨酸转运耦合到电化学质子梯度ΔμH+与耦合到的Na +梯度和膜电位反向定向裨运输。使用这两种官能重构和异源表达,我们表明,VGLUT传输谷氨酸和使用单一的底物结合位点,但不同的耦合到阳离子梯度裨。当面对细胞质中,这两种离子被输送到在ΔμH+依赖性方式突触小泡,与谷氨酸优于裨。时面向外的空间,皮是在的Na + - 偶联的输送方式,与谷氨酸结合竞争,但在更低的亲和力。我们的结论是VGLUTs在谷氨酸能神经元内囊泡发射装载和Pi平衡两者双重功能。 :Preobraschenski等。表明,该囊泡谷氨酸转运用作双向磷酸转运经耦合以与在每个方向上的不同阳离子的,因此可能在神经元磷酸盐体内平衡中起关键作用。关键词:VGLUT,SLC17家族,I型的Na +依赖性无机磷酸盐转运蛋白,ATP酶,蛋白脂质体,混合脂质体,抗 - 纳米抗体VGLUT1

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