Department of Molecular Physiology, Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, Leiden 2333 CC, The Netherlands.
European Center for Brain Research/IRCCS Santa Lucia Foundation, Via del Fosso di Fiorano 64, Rome 00143, Italy.
ACS Chem Biol. 2022 May 20;17(5):1174-1183. doi: 10.1021/acschembio.2c00122. Epub 2022 Apr 28.
Anandamide or -arachidonoylethanolamine (AEA) is a signaling lipid that modulates neurotransmitter release via activation of the type 1 cannabinoid receptor (CBR) in the brain. Termination of anandamide signaling is thought to be mediated a facilitated cellular reuptake process that utilizes a purported transporter protein. Recently, WOBE437 has been reported as a novel, natural product-based inhibitor of AEA reuptake that is active in cellular and models. To profile its target interaction landscape, we synthesized pac-WOBE, a photoactivatable probe derivative of WOBE437, and performed chemical proteomics in mouse neuroblastoma Neuro-2a cells. Surprisingly WOBE437, unlike the widely used selective inhibitor of AEA uptake OMDM-1, was found to increase AEA uptake in Neuro-2a cells. In line with this, WOBE437 reduced the cellular levels of AEA and related -acylethanolamines (NAEs). Using pac-WOBE, we identified saccharopine dehydrogenase-like oxidoreductase (SCCPDH), vesicle amine transport 1 (VAT1), and ferrochelatase (FECH) as WOBE437-interacting proteins in Neuro-2a cells. Further genetic studies indicated that SCCPDH and VAT1 were not responsible for the WOBE437-induced reduction in NAE levels. Regardless of the precise mechanism of action of WOB437 in AEA transport, we have identified SSCPHD, VAT1, and FECH as unprecedented off-targets of this molecule which should be taken into account when interpreting its cellular and effects.
花生四烯酸乙醇胺或 -arachidonoylethanolamine(AEA)是一种信号脂质,通过在大脑中激活 1 型大麻素受体(CBR)来调节神经递质的释放。AEA 信号的终止被认为是通过促进细胞再摄取过程介导的,该过程利用了一种推测的转运蛋白。最近,WOBE437 被报道为一种新型的、基于天然产物的 AEA 再摄取抑制剂,在细胞和 模型中都具有活性。为了描绘其靶标相互作用图谱,我们合成了 pac-WOBE,这是 WOBE437 的光活化探针衍生物,并在小鼠神经母细胞瘤 Neuro-2a 细胞中进行了化学蛋白质组学研究。令人惊讶的是,与广泛使用的 AEA 摄取选择性抑制剂 OMDM-1 不同,WOBE437 被发现可增加 Neuro-2a 细胞中的 AEA 摄取。与此一致,WOBE437 降低了细胞内 AEA 和相关 -acylethanolamines(NAEs)的水平。使用 pac-WOBE,我们在 Neuro-2a 细胞中鉴定出 saccharopine dehydrogenase-like oxidoreductase(SCCPDH)、囊泡胺转运蛋白 1(VAT1)和亚铁螯合酶(FECH)作为 WOBE437 的相互作用蛋白。进一步的遗传研究表明,SCCPDH 和 VAT1 不是 WOBE437 降低 NAE 水平的原因。无论 WOB437 在 AEA 转运中的作用机制如何,我们已经确定 SCCPDH、VAT1 和 FECH 是该分子的前所未有的非靶标,在解释其细胞和 作用时应考虑到这些非靶标。