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The betaine/GABA transporter and betaine: roles in brain kidney and liver

机译:甜菜碱/ GABA转运蛋白和甜菜碱:在大脑肾脏和肝脏中的作用

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摘要

The physiological roles of the betaine/GABA transporter (BGT1; slc6a12) are still being debated. BGT1 is a member of the solute carrier family 6 (the neurotransmitter, sodium symporter transporter family) and mediates cellular uptake of betaine and GABA in a sodium- and chloride-dependent process. Most of the studies of BGT1 concern its function and regulation in the kidney medulla where its role is best understood. The conditions here are hostile due to hyperosmolarity and significant concentrations of NH4Cl and urea. To withstand the hyperosmolarity, cells trigger osmotic adaptation, involving concentration of a transcriptional factor TonEBP/NFAT5 in the nucleus, and accumulate betaine and other osmolytes. Data from renal cells in culture, primarily MDCK, revealed that transcriptional regulation of BGT1 by TonEBP/NFAT5 is relatively slow. To allow more acute control of the abundance of BGT1 protein in the plasma membrane, there is also post-translation regulation of BGT1 protein trafficking which is dependent on intracellular calcium and ATP. Further, betaine may be important in liver metabolism as a methyl donor. In fact, in the mouse the liver is the organ with the highest content of BGT1. Hepatocytes express high levels of both BGT1 and the only enzyme that can metabolize betaine, namely betaine:homocysteine –S-methyltransferase (BHMT1). The BHMT1 enzyme removes a methyl group from betaine and transfers it to homocysteine, a potential risk factor for cardiovascular disease. Finally, BGT1 has been proposed to play a role in controlling brain excitability and thereby represents a target for anticonvulsive drug development. The latter hypothesis is controversial due to very low expression levels of BGT1 relative to other GABA transporters in brain, and also the primary location of BGT1 at the surface of the brain in the leptomeninges. These issues are discussed in detail.
机译:甜菜碱/ GABA转运蛋白(BGT1; slc6a12)的生理作用仍在争论中。 BGT1是溶质载体家族6(神经递质,钠转运蛋白家族)的成员,在依赖钠和氯的过程中介导甜菜碱和GABA的细胞摄取。 BGT1的大多数研究都涉及其在肾髓质中的功能和调节,在肾髓质中其作用得到了最好的了解。由于高渗和浓NH4Cl和尿素,这里的条件不利。为了承受高渗性,细胞触发渗透适应,涉及转录因子TonEBP / NFAT5在细胞核中的浓缩,并积累甜菜碱和其他渗透物。来自培养的肾细胞(主要是MDCK)的数据显示,TonEBP / NFAT5对BGT1的转录调控相对较慢。为了更迅速地控制质膜中BGT1蛋白的丰度,还对BGT1蛋白的运输进行了翻译后调节,这取决于细胞内钙和ATP。此外,甜菜碱作为甲基供体在肝脏代谢中可能很重要。实际上,在小鼠中,肝脏是BGT1含量最高的器官。肝细胞同时表达高水平的BGT1和可代谢甜菜碱的唯一酶,即甜菜碱:高半胱氨酸–S-甲基转移酶(BHMT1)。 BHMT1酶从甜菜碱中除去一个甲基,并将其转移到高半胱氨酸中,高半胱氨酸是心血管疾病的潜在危险因素。最后,已提出BGT1在控制脑兴奋性中发挥作用,从而代表抗惊厥药物开发的目标。后一种假设引起争议,因为相对于大脑中其他GABA转运蛋白而言,BGT1的表达水平非常低,而且在软脑膜中,BGT1的主要位置位于大脑表面。这些问题将详细讨论。

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