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The SLC6 transporters: perspectives on structure functions regulation and models for transporter dysfunction

机译:SLC6转运蛋白:关于转运蛋白功能障碍的结构功能调控和模型的观点

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摘要

The human SLC6 family is composed of approximately 20 structurally related symporters (co-transporters) that use the transmembrane electrochemical gradient to actively import their substrates into cells. Approximately half of the substrates of these transporters are amino acids, with others transporting biogenic amines and/or closely related compounds, such as nutrients and compatible osmolytes. In this short review, five leaders in the field discuss a number of currently important research themes that involve SLC6 transporters, highlighting the integrative role they play across a wide spectrum of different functions. The first essay, by Gary Rudnick, describes the molecular mechanism of their coupled transport which is being progressively better understood based on new crystal structures, functional studies, and modeling. Next, the question of multiple levels of transporter regulation is discussed by Reinhard Krämer, in the context of osmoregulation and stress response by the related bacterial betaine transporter BetP. The role of selected members of the human SLC6 family that function as nutrient amino acid transporters is then reviewed by François Verrey. He discusses how some of these transporters mediate the active uptake of (essential) amino acids into epithelial cells of the gut and the kidney tubule to support systemic amino acid requirements, whereas others are expressed in specific cells to support their specialized metabolism and/or growth. The most extensively studied members of the human SLC6 family are neurotransmitter reuptake transporters, many of which are important drug targets for the treatment of neuropsychiatric disorders. Randy Blakely discusses the role of posttranscriptional modifications of these proteins in regulating transporter subcellular localization and activity state. Finally, Dennis Murphy reviews how natural gene variants and mouse genetic models display consistent behavioral alterations that relate to altered extracellular neurotransmitter levels.
机译:人类SLC6家族由大约20个与结构相关的共转运蛋白(共转运蛋白)组成,这些转运蛋白使用跨膜电化学梯度将其底物主动导入细胞中。这些转运蛋白的底物大约一半是氨基酸,其他转运蛋白是生物胺和/或紧密相关的化合物,例如营养物质和相容性渗透压物质。在这篇简短的评论中,该领域的五位领导者讨论了涉及SLC6转运蛋白的许多当前重要的研究主题,突出了它们在多种不同功能中发挥的整合作用。加里·鲁德尼克(Gary Rudnick)撰写的第一篇文章描述了其偶联运输的分子机理,基于新的晶体结构,功能研究和建模,该机理逐渐被人们更好地理解。接下来,ReinhardKrämer在相关细菌甜菜碱转运蛋白BetP的渗透调节和应激反应的背景下讨论了转运蛋白调节水平的问题。弗朗索瓦·弗雷(FrançoisVerrey)随后回顾了人类SLC6家族中选定的成员作为营养氨基酸转运蛋白的作用。他讨论了其中的一些转运蛋白如何介导肠道(肠)和肾小管的上皮细胞对(必需)氨基酸的主动摄取,以支持全身性氨基酸需求,而其他转运蛋白在特定细胞中表达,以支持其专门的代谢和/或生长。 。人类SLC6家族中研究最广泛的成员是神经递质再摄取转运蛋白,其中许多是治疗神经精神疾病的重要药物靶标。 Randy Blakely讨论了这些蛋白质的转录后修饰在调节转运蛋白亚细胞定位和活性状态中的作用。最后,丹尼斯·墨菲(Dennis Murphy)回顾了自然基因变体和小鼠遗传模型如何显示与改变的细胞外神经递质水平相关的一致行为改变。

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