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Identification of N-acylethanolamines in Dictyostelium discoideum and confirmation of their hydrolysis by fatty acid amide hydrolase

机译:盘基网柄菌中N-酰基乙醇胺的鉴定并通过脂肪酸酰胺水解酶确认其水解

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摘要

N-acylethanolamines (NAEs) are endogenous lipid-based signaling molecules best known for their role in the endocannabinoid system in mammals, but they are also known to play roles in signaling pathways in plants. The regulation of NAEs in vivo is partly accomplished by the enzyme fatty acid amide hydrolase (FAAH), which hydrolyses NAEs to ethanolamine and their corresponding fatty acid. Inhibition of FAAH has been shown to increase the levels of NAEs in vivo and to produce desirable phenotypes. This has led to the development of pharmaceutical-based therapies for a variety of conditions targeting FAAH. Recently, our group identified a functional FAAH homolog in Dictyostelium discoideum, leading to our hypothesis that D. discoideum also possesses NAEs. In this study, we provide a further characterization of FAAH and identify NAEs in D. discoideum for the first time. We also demonstrate the ability to modulate their levels in vivo through the use of a semispecific FAAH inhibitor and confirm that these NAEs are FAAH substrates through in vitro studies. We believe the demonstration of the in vivo modulation of NAE levels suggests that D. discoideum could be a good simple model organism in which to study NAE-mediated signaling.
机译:N-酰基乙醇胺(NAE)是内源性基于脂质的信号分子,以其在哺乳动物的内源性大麻素系统中的作用而闻名,但也已知它们在植物的信号传导途径中发挥作用。体内对NAE的调节部分通过脂肪酸酰胺水解酶(FAAH)来完成,该酶将NAE水解为乙醇胺及其相应的脂肪酸。已经显示出FAAH的抑制会增加体内NAE的水平并产生所需的表型。这导致针对多种针对FAAH的疾病的药物疗法的发展。最近,我们的小组在盘基网柄菌中发现了功能性FAAH同源物,这导致我们的假设是盘基网柄菌也具有NAE。在这项研究中,我们提供了FAAH的进一步特征,并首次鉴定了D. discoideum中的NAE。我们还展示了通过使用半特异性FAAH抑制剂在体内调节其水平的能力,并通过体外研究证实了这些NAE是FAAH底物。我们相信,对NAE水平的体内调节的证明表明,D。discoideum可能是研究NAE介导的信号传导的良好简单模型生物。

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