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Role of FAAH-Like Anandamide Transporter in Anandamide Inactivation

机译:FAAH样Anandamide转运蛋白在Anandamide失活中的作用

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摘要

The endocannabinoid system modulates numerous physiological processes including nociception and reproduction. Anandamide (AEA) is an endocannabinoid that is inactivated by cellular uptake followed by intracellular hydrolysis by fatty acid amide hydrolase (FAAH). Recently, FAAH-like anandamide transporter (FLAT), a truncated and catalytically-inactive variant of FAAH, was proposed to function as an intracellular AEA carrier and mediate its delivery to FAAH for hydrolysis. Pharmacological inhibition of FLAT potentiated AEA signaling and produced antinociceptive effects. Given that endocannabinoids produce analgesia through central and peripheral mechanisms, the goal of the current work was to examine the expression of FLAT in the central and peripheral nervous systems. In contrast to the original report characterizing FLAT, expression of FLAT was not observed in any of the tissues examined. To investigate the role of FLAT as a putative AEA binding protein, FLAT was generated from FAAH using polymerase chain reaction and further analyzed. Despite its low cellular expression, FLAT displayed residual catalytic activity that was sensitive to FAAH inhibitors and abolished following mutation of its catalytic serine. Overexpression of FLAT potentiated AEA cellular uptake and this appeared to be dependent upon its catalytic activity. Immunofluorescence revealed that FLAT localizes primarily to intracellular membranes and does not contact the plasma membrane, suggesting that its capability to potentiate AEA uptake may stem from its enzymatic rather than transport activity. Collectively, our data demonstrate that FLAT does not serve as a global intracellular AEA carrier, although a role in mediating localized AEA inactivation in mammalian tissues cannot be ruled out.
机译:内源性大麻素系统调节多种生理过程,包括伤害感受和生殖。 Anandamide(AEA)是一种内源性大麻素,可被细胞摄取灭活,然后被脂肪酸酰胺水解酶(FAAH)进行细胞内水解。最近,有人提出了FAAH样的anandamide转运蛋白(FLAT),一种FAAH的截短且无催化活性的变体,起着细胞内AEA载体的作用,并介导其输送至FAAH进行水解。 FLAT的药理学抑制作用增强了AEA信号传导并产生了抗伤害感受的作用。考虑到内源性大麻素通过中枢和外周机制产生镇痛作用,目前的工作目标是检查FLAT在中枢和外周神经系统中的表达。与最初描述FLAT的报告相反,在所检查的任何组织中均未观察到FLAT的表达。为了研究FLAT作为推定的AEA结合蛋白的作用,使用聚合酶链反应从FAAH生成了FLAT,并进行了进一步分析。尽管其细胞表达较低,但FLAT仍表现出对FAAH抑制剂敏感的残留催化活性,并在其催化丝氨酸突变后被废除。 FLAT的过表达增强了AEA细胞的摄取,这似乎取决于其催化活性。免疫荧光显示,FLAT主要定位于细胞内膜,并且不与质膜接触,这表明其增强AEA摄取的能力可能源于其酶促活性而不是运输活性。总的来说,我们的数据表明,尽管不能排除在哺乳动物组织中介导局部AEA失活的作用,但FLAT不能作为全球细胞内AEA载体。

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