Institut de Pharmacologie Moléculaire et Cellulaire, Université Nice Sophia Antipolis and CNRS, 06560 Valbonne, France. Unité Mixte de Recherche 144, Institut Curie and CNRS, F-75248 Paris, France.
Institut de Pharmacologie Moléculaire et Cellulaire, Université Nice Sophia Antipolis and CNRS, 06560 Valbonne, France.
Science. 2014 Aug 8;345(6197):693-7. doi: 10.1126/science.1255288.
Phospholipids (PLs) with polyunsaturated acyl chains are extremely abundant in a few specialized cellular organelles such as synaptic vesicles and photoreceptor discs, but their effect on membrane properties is poorly understood. Here, we found that polyunsaturated PLs increased the ability of dynamin and endophilin to deform and vesiculate synthetic membranes. When cells incorporated polyunsaturated fatty acids into PLs, the plasma membrane became more amenable to deformation by a pulling force and the rate of endocytosis was accelerated, in particular, under conditions in which cholesterol was limiting. Molecular dynamics simulations and biochemical measurements indicated that polyunsaturated PLs adapted their conformation to membrane curvature. Thus, by reducing the energetic cost of membrane bending and fission, polyunsaturated PLs may help to support rapid endocytosis.
多不饱和酰基链的磷脂(PLs)在一些特殊的细胞细胞器中极其丰富,如突触小泡和光感受器盘,但它们对膜性质的影响还不太清楚。在这里,我们发现多不饱和 PLs 增加了 dynamin 和内吞作用蛋白将合成膜变形和形成小泡的能力。当细胞将多不饱和脂肪酸掺入 PLs 中时,质膜在拉力的作用下更容易变形,内吞作用的速度加快,特别是在胆固醇有限的情况下。分子动力学模拟和生化测量表明,多不饱和 PLs 使其构象适应膜曲率。因此,通过降低膜弯曲和裂变的能量成本,多不饱和 PLs 可能有助于支持快速内吞作用。