Myriocin modulates the altered lipid metabolism and storage in cystic fibrosis

脂质代谢 鞘脂 脂滴 自噬 细胞生物学 生物 炎症 囊性纤维化 生物化学 化学 免疫学 细胞凋亡 遗传学
作者
Paola Signorelli,Francesca Pivari,Matteo Barcella,Ivan Merelli,Aı́da Zulueta,Michele Dei,Lorenzo Rosso,Riccardo Ghidoni,Anna Caretti,Rita Paroni,Alessandra Mingione
出处
期刊:Cellular Signalling [Elsevier BV]
卷期号:81: 109928-109928 被引量:21
标识
DOI:10.1016/j.cellsig.2021.109928
摘要

Cystic fibrosis (CF) is a hereditary disease mostly related to ΔF508 CFTR mutation causing a proteinopathy that is characterized by multiple organ dysfunction, primarily lungs chronic inflammation, and infection. Defective autophagy and accumulation of the inflammatory lipid ceramide have been proposed as therapeutic targets. Accumulation of lipids and cholesterol was reported in the airways of CF patients, together with altered triglycerides and cholesterol levels in plasma, thus suggesting a disease-related dyslipidemia. Myriocin, an inhibitor of sphingolipids synthesis, significantly reduces inflammation and activates TFEB-induced response to stress, enhancing fatty acids oxidation and promoting autophagy. Myriocin ameliorates the response against microbial infection in CF models and patients' monocytes. Here we show that CF broncho-epithelial cells exhibit an altered distribution of intracellular lipids. We demonstrated that lipid accumulation is supported by an enhanced synthesis of fatty acids containing molecules and that Myriocin is able to reduce such accumulation. Moreover, Myriocin modulated the transcriptional profile of CF cells in order to restore autophagy, activate an anti-oxidative response, stimulate lipid metabolism and reduce lipid peroxidation. Moreover, lipid storage may be altered in CF cells, since we observed a reduced expression of lipid droplets related proteins named perilipin 3 and 5 and seipin. To note, Myriocin up-regulates the expression of genes that are involved in lipid droplets biosynthesis and maturation. We suggest that targeting sphingolipids de novo synthesis may counteract lipids accumulation by modulating CF altered transcriptional profile, thus restoring autophagy and lipid metabolism homeostasis.
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