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Anandamide Revisited: How Cholesterol and Ceramides Control Receptor-Dependent and Receptor-Independent Signal Transmission Pathways of a Lipid Neurotransmitter

机译:重审Anandamide:胆固醇和神经酰胺如何控制脂质神经递质的受体依赖性和受体依赖性信号传递途径

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摘要

Anandamide is a lipid neurotransmitter derived from arachidonic acid, a polyunsaturated fatty acid. The chemical differences between anandamide and arachidonic acid result in a slightly enhanced solubility in water and absence of an ionisable group for the neurotransmitter compared with the fatty acid. In this review, we first analyze the conformational flexibility of anandamide in aqueous and membrane phases. We next study the interaction of the neurotransmitter with membrane lipids and discuss the molecular basis of the unexpected selectivity of anandamide for cholesterol and ceramide from among other membrane lipids. We show that cholesterol behaves as a binding partner for anandamide, and that following an initial interaction mediated by the establishment of a hydrogen bond, anandamide is attracted towards the membrane interior, where it forms a molecular complex with cholesterol after a functional conformation adaptation to the apolar membrane milieu. The complex is then directed to the anandamide cannabinoid receptor (CB1) which displays a high affinity binding pocket for anandamide. We propose that cholesterol may regulate the entry and exit of anandamide in and out of CB1 by interacting with low affinity cholesterol recognition sites (CARC and CRAC) located in transmembrane helices. The mirror topology of cholesterol binding sites in the seventh transmembrane domain is consistent with the delivery, extraction and flip-flop of anandamide through a coordinated cholesterol-dependent mechanism. The binding of anandamide to ceramide illustrates another key function of membrane lipids which may occur independently of protein receptors. Interestingly, ceramide forms a tight complex with anandamide which blocks the degradation pathway of both lipids and could be exploited for anti-cancer therapies.
机译:花生四烯酸酰胺是衍生自花生四烯酸(一种多不饱和脂肪酸)的脂质神经递质。与脂肪酸相比,花生四烯酸和花生四烯酸之间的化学差异导致在水中的溶解度略有提高,并且神经递质没有可电离的基团。在这篇综述中,我们首先分析了水和膜相中金刚烷酰胺的构象柔性。接下来,我们将研究神经递质与膜脂质的相互作用,并讨论从其他膜脂质中,花生四烯酸对胆固醇和神经酰胺的意外选择性的分子基础。我们表明胆固醇表现为anandamide的结合伴侣,并且在通过氢键建立介导的初始相互作用后,anandamide被吸引到膜内部,在此膜上,胆固醇在与功能构象适应后与胆固醇形成分子复合物。非极膜环境。然后将复合物定向到显示出高亲和力的大麻素结合袋的大麻素大麻素受体(CB1)。我们建议,胆固醇可以通过与跨膜螺旋中的低亲和力胆固醇识别位点(CARC和CRAC)相互作用来调节CB1中Anandamide的出入。第七跨膜结构域中胆固醇结合位点的镜像拓扑结构与anandamide通过协调的胆固醇依赖性机制传递,提取和翻转相一致。阿南酰胺与神经酰胺的结合说明了膜脂质的另一关键功能,该膜脂质可独立于蛋白质受体而发生。有趣的是,神经酰胺与anandamide形成紧密的复合物,从而阻断了两种脂质的降解途径,可用于抗癌治疗。

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