Avalos-Hernandez Angeles, Juarez-Navarro Karina, Ruiz-Baca Estela, Meneses-Morales Ivan, Espino-Saldaña Edith, Martinez-Torres Ataulfo, Lopez-Rodriguez Angelica
Facultad de Ciencias Químicas, Universidad Juárez del Estado de Durango, Durango, Mexico.
Laboratorio de Neurobiología Molecular y Celular, Instituto de Neurobiología, Universidad Nacional Autónoma de México. Campus Juriquilla, Juriquilla, Mexico.
Front Pharmacol. 2024 Jul 25;15:1408156. doi: 10.3389/fphar.2024.1408156. eCollection 2024.
One of the reasons to suggest olive oil consumption for a healthy life is its potential to induce robust lipidomic remodeling through membrane modification by dietary lipids. This remodeling might, in turn, modulate essential lipid-protein interactions while maintaining accurate transmembrane protein/domain orientation. Oleic acid, the primary compound in olive oil, has been suggested as a modulator of ion channel function. In this study, we explored whether this lipid could rescue the trafficking of mutated transmembrane proteins. In our initial approach, we supplemented the cell culture medium of HEK-293 cells expressing cyclic nucleotide channels tagged using green fluorescent protein (CNG-GFP) with olive oil or oleic acid. In addition to wild-type channels, we also expressed R272Q and R278W mutant channels, two non-functional intracellularly retained channels related to retinopathies. We used fluorescence microscopy and patch-clamp in the inside-out configuration to assess changes in the cell localization and function of the tested channels. Our results demonstrated that olive oil and oleic acid facilitated the transport of cyclic nucleotide-gated R272Q mutant channels towards the plasma membrane, rendering them electrophysiologically functional. Thus, our findings reveal a novel property of olive oil as a membrane protein traffic inductor.
建议食用橄榄油以实现健康生活的原因之一是,它有可能通过膳食脂质对膜的修饰诱导强大的脂质组重塑。这种重塑反过来可能会调节重要的脂质 - 蛋白质相互作用,同时保持跨膜蛋白/结构域的准确取向。橄榄油中的主要成分油酸已被认为是离子通道功能的调节剂。在本研究中,我们探讨了这种脂质是否可以挽救突变跨膜蛋白的运输。在我们最初的方法中,我们用橄榄油或油酸补充表达用绿色荧光蛋白标记的环核苷酸通道(CNG - GFP)的HEK - 293细胞的细胞培养基。除了野生型通道外,我们还表达了R272Q和R278W突变通道,这是两种与视网膜病变相关的非功能性细胞内滞留通道。我们使用荧光显微镜和内向外配置的膜片钳来评估测试通道的细胞定位和功能变化。我们的结果表明,橄榄油和油酸促进了环核苷酸门控R272Q突变通道向质膜的转运,使其具有电生理功能。因此,我们的发现揭示了橄榄油作为膜蛋白运输诱导剂的新特性。