Verissimo Fatima, Halavatyi Aliaksandr, Pepperkok Rainer, Weiss Matthias
Cell Biology and Biophysics Unit, EMBL, Meyerhofstraße 1, Heidelberg D-69117, Germany.
Cell Biology and Biophysics Unit, EMBL, Meyerhofstraße 1, Heidelberg D-69117, Germany
J Cell Sci. 2015 Nov 15;128(22):4160-70. doi: 10.1242/jcs.172395. Epub 2015 Oct 12.
Newly synthesized proteins are sorted into COPII-coated transport carriers at the endoplasmic reticulum (ER). Assembly of the COPII coat complex, which occurs at ER exit sites (ERES), is initiated by membrane association and GTP loading of SAR1, followed by the recruitment of the SEC23-SEC24 and SEC13-SEC31 subcomplexes. Both of these two subcomplexes stimulate GTP hydrolysis and coat disassembly. This inherent disassembly capacity of COPII complexes needs to be regulated to allow sufficient time for cargo sorting and transport carrier formation. By performing fluorescence recovery after photobleaching (FRAP) and mathematical modeling, we show that p150(glued) (also known as DCTN1), a component of the dynactin complex, stabilizes the COPII pre-budding complex on ER membranes in a microtubule-independent manner. Concentration of the secretory marker ts-O45-G at ERES is reduced in the presence of a C-terminal p150(glued) fragment that prevents binding of endogenous p150(glued) to SEC23. A similar cargo reduction is observed upon p150(glued) knockdown. Taken together, our data suggest that cargo concentration at ERES is regulated by p150(glued) to coordinate protein sorting and transport carrier formation with the subsequent long-range transport towards the Golgi complex along microtubules.
新合成的蛋白质在内质网(ER)处被分选到COPII包被的转运载体中。COPII包被复合物的组装发生在内质网出口位点(ERES),由SAR1的膜结合和GTP加载启动,随后募集SEC23-SEC24和SEC13-SEC31亚复合物。这两个亚复合物都能刺激GTP水解和包被解体。COPII复合物的这种固有解体能力需要被调节,以便为货物分选和转运载体形成留出足够的时间。通过进行光漂白后的荧光恢复(FRAP)和数学建模,我们发现动力蛋白激活蛋白复合物的一个组分p150(glued)(也称为DCTN1),以不依赖微管的方式稳定内质网膜上的COPII预出芽复合物。在存在阻止内源性p150(glued)与SEC23结合的C末端p150(glued)片段时,ERES处分泌标记物ts-O45-G的浓度降低。在敲低p150(glued)后观察到类似的货物减少。综上所述,我们的数据表明,ERES处的货物浓度受p150(glued)调节,以协调蛋白质分选和转运载体形成与随后沿微管向高尔基体复合物的长距离转运。