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Functional characterization of the alanine-serine-cysteine exchanger of Carnobacterium sp AT7

机译:Carnobacterium sp AT7的丙氨酸-丝氨酸-半胱氨酸交换子的功能表征

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摘要

Many key cell processes require prior cell uptake of amino acids from the environment, which is facilitated by cell membrane amino acid transporters such as those of the L-type amino acid transporter (LAT) subfamily. Alterations in LAT subfamily amino acid transport are associated with several human diseases, including cancer, aminoacidurias, and neurodegenerative conditions. Therefore, from the perspective of human health, there is considerable interest in obtaining structural information about these transporter proteins. We recently solved the crystal structure of the first LAT transporter, the bacterial alanine-serine-cysteine exchanger of Carnobacterium sp AT7 (BasC). Here, we provide a complete functional characterization of detergent-purified, liposome-reconstituted BasC transporter to allow the extension of the structural insights into mechanistic understanding. BasC is a sodium- and proton-independent small neutral amino acid exchanger whose substrate and inhibitor selectivity are almost identical to those previously described for the human LAT subfamily member Asc-1. Additionally, we show that, like its human counterparts, this transporter has apparent affinity asymmetry for the intra- and extracellular substrate binding sites—a key feature in the physiological role played by these proteins. BasC is an excellent paradigm of human LAT transporters and will contribute to our understanding of the molecular mechanisms underlying substrate recognition and translocation at both sides of the plasma membrane.
机译:许多关键的细胞过程需要事先从环境中吸收氨基酸,这是由细胞膜氨基酸转运蛋白(例如L型氨基酸转运蛋白(LAT)亚家族的蛋白)促进的。 LAT亚家族氨基酸转运的改变与几种人类疾病有关,包括癌症,氨基酸尿症和神经退行性疾病。因此,从人类健康的角度来看,获得有关这些转运蛋白的结构信息有相当大的兴趣。我们最近解决了第一个LAT转运蛋白,即Carnobacterium sp AT7(BasC)的细菌丙氨酸-丝氨酸-半胱氨酸交换子的晶体结构。在这里,我们提供了洗涤剂纯化的脂质体重构的BasC转运蛋白的完整功能表征,以允许将结构见解扩展到机械理解中。 BasC是不依赖钠和质子的小型中性氨基酸交换剂,其底物和抑制剂的选择性几乎与先前针对人LAT亚家族成员Asc-1所述的相同。此外,我们证明,与人类同行一样,该转运蛋白对细胞内和细胞外底物结合位点具有明显的亲和力不对称性,这是这些蛋白质发挥生理作用的关键特征。 BasC是人类LAT转运蛋白的极佳范例,将有助于我们了解质膜两侧底物识别和易位的分子机制。

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