Aridor M, Fish K N, Bannykh S, Weissman J, Roberts T H, Lippincott-Schwartz J, Balch W E
Department of Cell and Molecular Biology, The Scripps Research Institute, La Jolla, California 92037, USA.
J Cell Biol. 2001 Jan 8;152(1):213-29. doi: 10.1083/jcb.152.1.213.
Cargo selection and export from the endoplasmic reticulum is mediated by the COPII coat machinery that includes the small GTPase Sar1 and the Sec23/24 and Sec13/31 complexes. We have analyzed the sequential events regulated by purified Sar1 and COPII coat complexes during synchronized export of cargo from the ER in vitro. We find that activation of Sar1 alone, in the absence of other cytosolic components, leads to the formation of ER-derived tubular domains that resemble ER transitional elements that initiate cargo selection. These Sar1-generated tubular domains were shown to be transient, functional intermediates in ER to Golgi transport in vitro. By following cargo export in live cells, we show that ER export in vivo is also characterized by the formation of dynamic tubular structures. Our results demonstrate an unanticipated and novel role for Sar1 in linking cargo selection with ER morphogenesis through the generation of transitional tubular ER export sites.
货物从内质网的选择和输出由COPII包被机制介导,该机制包括小GTP酶Sar1以及Sec23/24和Sec13/31复合物。我们分析了在体外货物从内质网同步输出过程中,纯化的Sar1和COPII包被复合物所调控的一系列事件。我们发现,在没有其他胞质成分的情况下,单独激活Sar1会导致形成源自内质网的管状结构域,这些结构域类似于启动货物选择的内质网过渡元件。这些由Sar1生成的管状结构域被证明是体外内质网到高尔基体运输过程中的瞬时功能性中间体。通过追踪活细胞中的货物输出,我们表明体内内质网输出的特征也是形成动态管状结构。我们的结果证明了Sar1在通过生成过渡性管状内质网输出位点将货物选择与内质网形态发生联系起来方面具有意想不到的新作用。