Ehrlich Marcelo, Boll Werner, Van Oijen Antoine, Hariharan Ramesh, Chandran Kartik, Nibert Max L, Kirchhausen Tomas
Department of Cell Biology, Harvard Medical School and The CBR Institute for Biomedical Research, 200 Longwood Avenue, Boston, MA 02115, USA.
Cell. 2004 Sep 3;118(5):591-605. doi: 10.1016/j.cell.2004.08.017.
Clathrin-coated vesicles carry traffic from the plasma membrane to endosomes. We report here the real-time visualization of cargo sorting and endocytosis by clathrin-coated pits in living cells. We have detected the formation of coats by monitoring incorporation of fluorescently tagged clathrin or its adaptor AP-2; we have also followed clathrin-mediated uptake of transferrin and of single LDL or reovirus particles. The intensity of a cargo-loaded clathrin cluster grows steadily during its lifetime, and the time required to complete assembly is proportional to the size of the cargo particle. These results are consistent with a nucleation-growth mechanism and an approximately constant growth rate. There are no strongly preferred nucleation sites. A proportion of the nucleation events are weak and short lived. Cargo incorporation occurs primarily or exclusively in a newly formed coated pit. Our data lead to a model in which coated pits initiate randomly but collapse unless stabilized, perhaps by cargo capture.
网格蛋白包被小泡负责将物质从质膜运输到内体。我们在此报告了活细胞中网格蛋白包被小窝对货物分选和内吞作用的实时可视化。我们通过监测荧光标记的网格蛋白或其衔接蛋白AP-2的掺入来检测包被的形成;我们还追踪了网格蛋白介导的转铁蛋白以及单个低密度脂蛋白或呼肠孤病毒颗粒的摄取。负载货物的网格蛋白簇在其生命周期内强度稳步增加,完成组装所需的时间与货物颗粒的大小成正比。这些结果与成核-生长机制和大致恒定的生长速率一致。不存在强烈偏好的成核位点。一部分成核事件较弱且持续时间短。货物掺入主要或仅发生在新形成的包被小窝中。我们的数据得出一个模型,其中包被小窝随机启动,但除非通过货物捕获等方式稳定下来,否则会塌陷。