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Insights into the Structure Function and Ligand Discovery of the Large Neutral Amino Acid Transporter 1 LAT1

机译:洞察大型中性氨基酸转运蛋白LAT1的结构功能和配体

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摘要

The large neutral amino acid transporter 1 (LAT1, or SLC7A5) is a sodium- and pH-independent transporter, which supplies essential amino acids (e.g., leucine, phenylalanine) to cells. It plays an important role at the Blood–Brain Barrier (BBB) where it facilitates the transport of thyroid hormones, pharmaceuticals (e.g., l-DOPA, gabapentin), and metabolites into the brain. Moreover, its expression is highly upregulated in various types of human cancer that are characterized by an intense demand for amino acids for growth and proliferation. Therefore, LAT1 is believed to be an important drug target for cancer treatment. With the crystallization of the arginine/agmatine antiporter (AdiC) from Escherichia Coli, numerous homology models of LAT1 have been built to elucidate the substrate binding site, ligand–transporter interaction, and structure–function relationship. The use of these models in combination with molecular docking and experimental testing has identified novel chemotypes of ligands of LAT1. Here, we highlight the structure, function, transport mechanism, and homology modeling of LAT1. Additionally, results from structure–function studies performed on LAT1 are addressed, which have enhanced our knowledge of the mechanism of substrate binding and translocation. This is followed by a discussion on ligand- and structure-based approaches, with an emphasis on elucidating the molecular basis of LAT1 inhibition. Finally, we provide an exhaustive summary of different LAT1 inhibitors that have been identified so far, including the recently discovered irreversible covalent inhibitors.
机译:大型中性氨基酸转运蛋白1(LAT1或SLC7A5)是不依赖钠和pH的转运蛋白,可为细胞提供必需氨基酸(例如亮氨酸,苯丙氨酸)。它在血脑屏障(BBB)中起着重要作用,在血脑屏障中,它有助于甲状腺激素,药物(例如l-DOPA,加巴喷丁)和代谢物向大脑的运输。而且,其表达在各种类型的人类癌症中高度上调,这些人类癌症的特征是对氨基酸的增长和增殖的强烈需求。因此,LAT1被认为是用于癌症治疗的重要药物靶标。随着大肠杆菌中精氨酸/胍丁胺反转运蛋白(AdiC)的结晶,已建立了许多LAT1同源模型来阐明底物结合位点,配体与转运蛋白的相互作用以及结构与功能的关系。这些模型与分子对接和实验测试相结合的使用已确定了LAT1配体的新型化学型。在这里,我们重点介绍了LAT1的结构,功能,转运机制和同源性模型。此外,针对LAT1进行的结构-功能研究的结果也得到了解决,这增强了我们对底物结合和转运机制的认识。接下来是对基于配体和结构的方法的讨论,重点是阐明LAT1抑制的分子基础。最后,我们提供了迄今为止已确定的不同LAT1抑制剂的详尽摘要,其中包括最近发现的不可逆共价抑制剂。

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