Farhan Hesso, Reiterer Veronika, Kriz Alexander, Hauri Hans-Peter, Pavelka Margit, Sitte Harald H, Freissmuth Michael
Institute of Pharmacology, Center of Biomolecular Medicine and Pharmacology, Medical University of Vienna, Waehringer Str. 13a, 1090 Vienna, Austria.
J Cell Sci. 2008 Mar 15;121(Pt 6):753-61. doi: 10.1242/jcs.017681. Epub 2008 Feb 19.
The C-terminus of GABA transporter 1 (GAT1, SLC6A1) is required for trafficking of the protein through the secretory pathway to reach its final destination, i.e. the rim of the synaptic specialization. We identified a motif of three hydrophobic residues (569VMI571) that was required for export of GAT1 from the ER-Golgi intermediate compartment (ERGIC). This conclusion was based on the following observations: (i) GAT1-SSS, the mutant in which 569VMI571 was replaced by serine residues, was exported from the ER in a COPII-dependent manner but accumulated in punctate structures and failed to reach the Golgi; (ii) under appropriate conditions (imposing a block at 15 degrees C, disruption of COPI), these structures also contained ERGIC53; (iii) the punctae were part of a dynamic compartment, because it was accessible to a second anterograde cargo [the temperature-sensitive variant of vesicular stomatitis virus G protein (VSV-G)] and because GAT1-SSS could be retrieved from the punctate structures by addition of a KKxx-based retrieval motif, which supported retrograde transport to the ER. To the best of our knowledge, the VMI-motif of GAT1 provides the first example of a cargo-based motif that specifies export from the ERGIC.
γ-氨基丁酸转运体1(GAT1,SLC6A1)的C末端是该蛋白通过分泌途径运输至其最终目的地(即突触特化边缘)所必需的。我们鉴定出一个由三个疏水残基组成的基序(569VMI571),它是GAT1从内质网-高尔基体中间区室(ERGIC)输出所必需的。这一结论基于以下观察结果:(i)GAT1-SSS(其中569VMI571被丝氨酸残基取代的突变体)以COPII依赖的方式从内质网输出,但在点状结构中积累,无法到达高尔基体;(ii)在适当条件下(在15℃施加阻断,破坏COPI),这些结构中也含有ERGIC53;(iii)这些点状结构是一个动态区室的一部分,因为它可被第二种顺行货物[水泡性口炎病毒G蛋白(VSV-G)的温度敏感变体]所利用,并且因为通过添加基于KKxx基序的回收基序可以从点状结构中回收GAT1-SSS,这支持了向内质网的逆行运输。据我们所知,GAT1的VMI基序提供了第一个基于货物的基序的例子,该基序指定了从ERGIC的输出。