Faculty of Veterinary Medicine; Institute of Physiological Chemistry, University of Leipzig, Leipzig, Germany.
PLoS One. 2011;6(8):e24066. doi: 10.1371/journal.pone.0024066. Epub 2011 Aug 24.
The eukaryotic cell membrane possesses numerous complex functions, which are essential for life. At this, the composition and the structure of the lipid bilayer are of particular importance. Polyunsaturated fatty acids may modulate the physical properties of biological membranes via alteration of membrane lipid composition affecting numerous physiological processes, e.g. in the immune system. In this systematic study we present fatty acid and peptide profiles of cell membrane and membrane rafts of murine macrophages that have been supplemented with saturated fatty acids as well as PUFAs from the n-3, the n-6 and the n-9 family. Using fatty acid composition analysis and mass spectrometry-based peptidome profiling we found that PUFAs from both the n-3 and the n-6 family have an impact on lipid and protein composition of plasma membrane and membrane rafts in a similar manner. In addition, we found a relation between the number of bis-allyl-methylene positions of the PUFA added and the unsaturation index of plasma membrane as well as membrane rafts of supplemented cells. With regard to the proposed significance of lipid microdomains for disease development and treatment our study will help to achieve a targeted dietary modulation of immune cell lipid bilayers.
真核细胞膜具有许多复杂的功能,这些功能对生命至关重要。在这一点上,脂质双层的组成和结构尤为重要。多不饱和脂肪酸可以通过改变膜脂组成来调节生物膜的物理性质,从而影响许多生理过程,例如免疫系统。在这项系统研究中,我们展示了补充饱和脂肪酸以及来自 n-3、n-6 和 n-9 家族的多不饱和脂肪酸的小鼠巨噬细胞膜和膜筏的脂肪酸和肽谱。通过脂肪酸组成分析和基于质谱的肽组学分析,我们发现来自 n-3 和 n-6 家族的多不饱和脂肪酸以相似的方式影响质膜和膜筏的脂质和蛋白质组成。此外,我们发现添加的多不饱和脂肪酸中双烯丙基亚甲基位置的数量与补充细胞的质膜和膜筏的不饱和指数之间存在关系。鉴于脂质微区对疾病发展和治疗的重要意义,我们的研究将有助于实现对免疫细胞脂质双层的靶向饮食调节。