Department of Physiology, College of Medicine, University of Tennessee Health Science Center, 71S. Manassas St., Memphis, TN, 38163, USA.
Department of Pharmaceutical Sciences and Institute of Biomarker and Molecular Therapeutics (IBMT), College of Pharmacy, University of Tennessee Health Science Center, 881 Madison Ave., Memphis, TN, 38163, USA.
Nat Commun. 2019 Mar 13;10(1):1200. doi: 10.1038/s41467-019-09055-7.
Mechanosensitive ion channels rely on membrane composition to transduce physical stimuli into electrical signals. The Piezo1 channel mediates mechanoelectrical transduction and regulates crucial physiological processes, including vascular architecture and remodeling, cell migration, and erythrocyte volume. The identity of the membrane components that modulate Piezo1 function remain largely unknown. Using lipid profiling analyses, we here identify dietary fatty acids that tune Piezo1 mechanical response. We find that margaric acid, a saturated fatty acid present in dairy products and fish, inhibits Piezo1 activation and polyunsaturated fatty acids (PUFAs), present in fish oils, modulate channel inactivation. Force measurements reveal that margaric acid increases membrane bending stiffness, whereas PUFAs decrease it. We use fatty acid supplementation to abrogate the phenotype of gain-of-function Piezo1 mutations causing human dehydrated hereditary stomatocytosis. Beyond Piezo1, our findings demonstrate that cell-intrinsic lipid profile and changes in the fatty acid metabolism can dictate the cell's response to mechanical cues.
机械敏感离子通道依赖于膜成分将物理刺激转化为电信号。Piezo1 通道介导机电转换,并调节关键的生理过程,包括血管结构和重塑、细胞迁移和红细胞体积。调节 Piezo1 功能的膜成分的身份在很大程度上仍然未知。我们使用脂质分析来鉴定调节 Piezo1 机械反应的膳食脂肪酸。我们发现,存在于乳制品和鱼类中的饱和脂肪酸肉豆蔻酸抑制 Piezo1 的激活,而存在于鱼油中的多不饱和脂肪酸(PUFA)调节通道失活。力测量显示,肉豆蔻酸增加了膜弯曲刚度,而 PUFAs 则降低了它。我们使用脂肪酸补充来消除导致人类脱水遗传性口炎性腹泻的功能获得性 Piezo1 突变的表型。除了 Piezo1,我们的发现表明,细胞内固有脂质谱和脂肪酸代谢的变化可以决定细胞对机械线索的反应。