Kassas Nawal, Tanguy Emeline, Thahouly Tamou, Fouillen Laetitia, Heintz Dimitri, Chasserot-Golaz Sylvette, Bader Marie-France, Grant Nancy J, Vitale Nicolas
From the Institut des Neurosciences Cellulaires et Intégratives (INCI), UPR-3212 CNRS and Université de Strasbourg, 5 Rue Blaise Pascal, 67084 Strasbourg.
the Laboratoire de Biogénèse Membranaire, UMR-5200 CNRS, Plateforme Métabolome, Université de Bordeaux, 33883 Villenave D'Ornon, and.
J Biol Chem. 2017 Mar 10;292(10):4266-4279. doi: 10.1074/jbc.M116.742346. Epub 2017 Jan 23.
Phosphatidic acid (PA) is the simplest phospholipid naturally existing in living organisms, but it constitutes only a minor fraction of total cell lipids. PA has attracted considerable attention because it is a phospholipid precursor, a lipid second messenger, and a modulator of membrane shape, and it has thus been proposed to play key cellular functions. The dynamics of PA in cells and in subcellular compartments, however, remains an open question. The recent generation of fluorescent probes for PA, by fusing GFP to PA-binding domains, has provided direct evidence for PA dynamics in different intracellular compartments. Here, three PA sensors were characterized and their preferences for different PA species in particular lipidic environments were compared. In addition, the localization of PA in macrophages during frustrated phagocytosis was examined using these PA sensors and was combined with a lipidomic analysis of PA in intracellular compartments. The results indicate that the PA sensors display some preferences for specific PA species, depending on the lipid environment, and the localization study in macrophages revealed the complexity of intracellular PA dynamics.
磷脂酸(PA)是生物体中天然存在的最简单的磷脂,但它仅占细胞总脂质的一小部分。PA因其是磷脂前体、脂质第二信使和膜形状调节剂而备受关注,因此有人提出它发挥着关键的细胞功能。然而,PA在细胞和亚细胞区室中的动态变化仍是一个悬而未决的问题。最近通过将绿色荧光蛋白(GFP)与PA结合域融合而产生的PA荧光探针,为PA在不同细胞内区室中的动态变化提供了直接证据。在这里,对三种PA传感器进行了表征,并比较了它们在特定脂质环境中对不同PA种类的偏好。此外,使用这些PA传感器检查了巨噬细胞在吞噬受挫过程中PA的定位,并结合了细胞内区室中PA的脂质组学分析。结果表明,PA传感器对特定的PA种类表现出一些偏好,这取决于脂质环境,并且在巨噬细胞中的定位研究揭示了细胞内PA动态变化的复杂性。