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Direct observation of electrogenic NH4+ transport in ammonium transport (Amt) proteins

机译:直接观察铵转运(Amt)蛋白中的电致NH4 +转运

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摘要

Ammonium transport (Amt) proteins form a ubiquitous family of integral membrane proteins that specifically shuttle ammonium across membranes. In prokaryotes, archaea, and plants, Amts are used as environmental NH4+ scavengers for uptake and assimilation of nitrogen. In the eukaryotic homologs, the Rhesus proteins, NH4+/NH3 transport is used instead in acid–base and pH homeostasis in kidney or NH4+/NH3 (and eventually CO2) detoxification in erythrocytes. Crystal structures and variant proteins are available, but the inherent challenges associated with the unambiguous identification of substrate and monitoring of transport events severely inhibit further progress in the field. Here we report a reliable in vitro assay that allows us to quantify the electrogenic capacity of Amt proteins. Using solid-supported membrane (SSM)-based electrophysiology, we have investigated the three Amt orthologs from the euryarchaeon Archaeoglobus fulgidus. Af-Amt1 and Af-Amt3 are electrogenic and transport the ammonium and methylammonium cation with high specificity. Transport is pH-dependent, with a steep decline at pH values of ∼5.0. Despite significant sequence homologies, functional differences between the three proteins became apparent. SSM electrophysiology provides a long-sought-after functional assay for the ubiquitous ammonium transporters.
机译:铵转运蛋白(Amt)形成了无处不在的完整膜蛋白家族,这些膜蛋白专门将铵跨膜穿梭。在原核生物,古细菌和植物中,Amts被用作环境NH4 + 清除剂,用于氮的吸收和吸收。在真核生物同源物中,使用恒河猴蛋白NH4 + / NH3转运来代替肾脏的酸碱和pH稳态或NH4 + / NH3(最终是CO2)。红细胞排毒。可获得晶体结构和变体蛋白质,但是与明确鉴定底物和监测转运事件相关的内在挑战严重阻碍了该领域的进一步发展。在这里,我们报告了一种可靠的体外测定,该测定使我们能够量化Amt蛋白的电生成能力。使用基于固体支持膜(SSM)的电生理学,我们研究了来自古细菌eryyarchaeon fulgidus的三个Amt直系同源物。 Af-Amt1和Af-Amt3是电动的,可高特异性地转运铵和甲基铵阳离子。转运是pH依赖性的,pH值约5.0时急剧下降。尽管序列同源性很高,但三种蛋白质之间的功能差异却很明显。 SSM电生理学为普遍存在的铵转运蛋白提供了人们期待已久的功能测定方法。

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