Kirchhausen T, Bonifacino J S, Riezman H
Harvard Medical School, Department of Cell Biology, Boston, MA 02115, USA.
Curr Opin Cell Biol. 1997 Aug;9(4):488-95. doi: 10.1016/s0955-0674(97)80024-5.
How soluble cargo molecules concentrate into budding vesicles is the subject of intensive current research. Clathrin-based vesiculation from the plasma membrane and the trans-Golgi network constitutes the best described system that supports this sorting process. Soluble ligands bind to specific transmembrane receptors which have been shown to interact directly with clathrin adaptor complexes, components of clathrin coats. At the same time, these clathrin adaptors facilitate clathrin coat assembly and probably regulate the recruitment of the rest of the coat components. Recent studies have looked at both the interaction of receptor tails with adaptors and the assembly of the clathrin coat. Progress has also been made in elucidating how soluble cargo molecules may be concentrated for exit from the endoplasmic reticulum.
可溶性货物分子如何浓缩进入出芽囊泡是当前深入研究的课题。基于网格蛋白从质膜和反式高尔基体网络形成囊泡构成了支持这种分选过程的最具代表性的系统。可溶性配体与特定的跨膜受体结合,这些受体已被证明可直接与网格蛋白衔接复合物(网格蛋白衣被的组成成分)相互作用。同时,这些网格蛋白衔接蛋白促进网格蛋白衣被的组装,并可能调节衣被其他成分的募集。最近的研究着眼于受体尾部与衔接蛋白的相互作用以及网格蛋白衣被的组装。在阐明可溶性货物分子如何浓缩以便从内质网输出方面也取得了进展。