Laboratoire Reproduction et Développement des Plantes, Université de Lyon, ENS de Lyon, UCB Lyon 1, CNRS, INRA, F-69342 Lyon, France.
J Exp Bot. 2023 Apr 18;74(8):2479-2488. doi: 10.1093/jxb/erad032.
Biological membranes are highly dynamic, in particular due to the constant exchange of vesicles between the different compartments of the cell. In addition, the dynamic nature of membranes is also caused by their inherently fluid properties, with the diffusion of both proteins and lipids within their leaflets. Lipid diffusion is particularly difficult to study in vivo but recent advances in optical microscopy and lipid visualization now enable the characterization of lipid lateral motion, and here we review these methods in plants. We then discuss the parameters that affect lipid diffusion in membranes and explore their consequences on the formation of membrane domains at different scales. Finally, we consider how controlled lipid diffusion affects membrane functions during cell signaling, development, and environmental interactions.
生物膜具有高度动态性,特别是由于囊泡在细胞的不同隔室之间不断交换。此外,膜的动态性质还归因于其固有的流变性,其中蛋白质和脂质在其双层内扩散。脂类扩散在体内研究特别困难,但最近在光学显微镜和脂类可视化方面的进展使得能够对脂类横向运动进行特征描述,在此我们综述了植物中的这些方法。然后,我们讨论了影响膜脂扩散的参数,并探讨了它们对不同尺度下膜域形成的影响。最后,我们考虑了受控脂类扩散如何影响细胞信号转导、发育和环境相互作用过程中的膜功能。