Manneville Jean-Baptiste, Casella Jean-François, Ambroggio Ernesto, Gounon Pierre, Bertherat Julien, Bassereau Patricia, Cartaud Jean, Antonny Bruno, Goud Bruno
Unité Mixte de Recherche 144, Centre National de la Recherche Scientifique-Institut Curie, 26 rue d'Ulm, 75248 Paris Cedex 05, France.
Proc Natl Acad Sci U S A. 2008 Nov 4;105(44):16946-51. doi: 10.1073/pnas.0807102105. Epub 2008 Oct 30.
Cytoplasmic coat proteins are required for cargo selection and budding of tubulovesicular transport intermediates that shuttle between intracellular compartments. To better understand the physical parameters governing coat assembly and coat-induced membrane deformation, we have reconstituted the Arf1-dependent assembly of the COPI coat on giant unilamellar vesicles by using fluorescently labeled Arf1 and coatomer. Membrane recruitment of Arf1-GTP occurs exclusively on disordered lipid domains and does not induce optically visible membrane deformation. In the presence of Arf1-GTP, coatomer self-assembles into weakly curved coats on membranes under high tension, while it induces extensive membrane deformation at low membrane tension. These deformations appear to have a composition different from the parental membrane because they are protected from phase transition. These findings suggest that the COPI coat is adapted to liquid disordered membrane domains where it could promote lipid sorting and that its mechanical effects can be tuned by membrane tension.
胞质衣被蛋白是在细胞内区室之间穿梭的微管泡状运输中间体进行货物选择和出芽所必需的。为了更好地理解控制衣被组装和衣被诱导的膜变形的物理参数,我们通过使用荧光标记的Arf1和衣被蛋白复合物,在巨型单层囊泡上重建了依赖于Arf1的COPI衣被组装。Arf1-GTP的膜募集仅发生在无序脂质结构域上,不会诱导光学可见的膜变形。在存在Arf1-GTP的情况下,衣被蛋白复合物在高张力下在膜上自组装成弱弯曲的衣被,而在低膜张力下它会诱导广泛的膜变形。这些变形似乎具有与亲代膜不同的组成,因为它们不受相变影响。这些发现表明,COPI衣被适用于液态无序膜结构域,在那里它可以促进脂质分选,并且其机械效应可以通过膜张力进行调节。