Instituto de Neurociencias, CSIC-Universidad Miguel Hernández, Cra de Valencia S/N, Sant Joan d'Alacant, 03550 Alicante, Spain.
Department of Biomedical Science, University of Sheffield, Sheffield S10 2TN, UK.
Int J Mol Sci. 2022 Jan 19;23(3):1086. doi: 10.3390/ijms23031086.
The fusion of membranes is a central part of the physiological processes involving the intracellular transport and maturation of vesicles and the final release of their contents, such as neurotransmitters and hormones, by exocytosis. Traditionally, in this process, proteins, such SNAREs have been considered the essential components of the fusion molecular machinery, while lipids have been seen as merely structural elements. Nevertheless, sphingosine, an intracellular signalling lipid, greatly increases the release of neurotransmitters in neuronal and neuroendocrine cells, affecting the exocytotic fusion mode through the direct interaction with SNAREs. Moreover, recent studies suggest that FTY-720 (Fingolimod), a sphingosine structural analogue used in the treatment of multiple sclerosis, simulates sphingosine in the promotion of exocytosis. Furthermore, this drug also induces the intracellular fusion of organelles such as dense vesicles and mitochondria causing cell death in neuroendocrine cells. Therefore, the effect of sphingosine and synthetic derivatives on the heterologous and homologous fusion of organelles can be considered as a new mechanism of action of sphingolipids influencing important physiological processes, which could underlie therapeutic uses of sphingosine derived lipids in the treatment of neurodegenerative disorders and cancers of neuronal origin such neuroblastoma.
膜融合是涉及细胞内运输和小泡成熟以及通过胞吐作用最终释放其内容物(如神经递质和激素)的生理过程的核心部分。传统上,在这个过程中,蛋白质(如 SNAREs)被认为是融合分子机制的必需成分,而脂质则被视为仅仅是结构元素。然而,鞘氨醇,一种细胞内信号脂质,极大地增加了神经元和神经内分泌细胞中神经递质的释放,通过与 SNAREs 的直接相互作用影响胞吐融合模式。此外,最近的研究表明,FTY-720(芬戈莫德),一种用于治疗多发性硬化症的鞘氨醇结构类似物,模拟鞘氨醇促进胞吐作用。此外,这种药物还诱导致密小泡和线粒体等细胞器的细胞内融合,导致神经内分泌细胞死亡。因此,鞘氨醇和合成衍生物对异源和同源细胞器融合的影响可以被认为是影响重要生理过程的鞘脂类的一种新作用机制,这可能为鞘氨醇衍生脂质在治疗神经退行性疾病和神经元来源的癌症(如神经母细胞瘤)中的治疗用途提供依据。