Wang Zong-Heng, Rabouille Catherine, Geisbrecht Erika R
Division of Cell Biology and Biophysics, School of Biological Sciences, University of Missouri, Kansas City, MO 64110, USA.
Hubrecht Institute-KNAW & University Medical Center Utrecht, 3584 CT Utrecht, The Netherlands The Department of Cell Biology, UMC Utrecht, 3584 CX Utrecht, The Netherlands.
Biol Open. 2015 Apr 10;4(5):636-48. doi: 10.1242/bio.201511551.
Drosophila Clueless (Clu) and its conserved orthologs are known for their role in the prevention of mitochondrial clustering. Here, we uncover a new role for Clu in the delivery of integrin subunits in muscle tissue. In clu mutants, αPS2 integrin, but not βPS integrin, abnormally accumulates in a perinuclear endoplasmic reticulum (ER) subdomain, a site that mirrors the endogenous localization of Clu. Loss of components essential for mitochondrial distribution do not phenocopy the clu mutant αPS2 phenotype. Conversely, RNAi knockdown of the Drosophila Golgi reassembly and stacking protein GRASP55/65 (dGRASP) recapitulates clu defects, including the abnormal accumulation of αPS2 and larval locomotor activity. Both Clu and dGRASP proteins physically interact and loss of Clu displaces dGRASP from ER exit sites, suggesting that Clu cooperates with dGRASP for the exit of αPS2 from a perinuclear subdomain in the ER. We also found that Clu and dGRASP loss of function leads to ER stress and that the stability of the ER exit site protein Sec16 is severely compromised in the clu mutants, thus explaining the ER accumulation of αPS2. Remarkably, exposure of clu RNAi larvae to chemical chaperones restores both αPS2 delivery and functional ER exit sites. We propose that Clu together with dGRASP prevents ER stress and therefore maintains Sec16 stability essential for the functional organization of perinuclear early secretory pathway. This, in turn, is essential for integrin subunit αPS2 ER exit in Drosophila larval myofibers.
果蝇“ clueless”(Clu)及其保守的直系同源物以其在预防线粒体聚集方面的作用而闻名。在这里,我们发现了Clu在肌肉组织中整合素亚基传递方面的新作用。在clu突变体中,αPS2整合素而非βPS整合素异常积聚在核周内质网(ER)亚结构域中,该位点反映了Clu的内源性定位。线粒体分布必需成分的缺失不会模拟clu突变体αPS2的表型。相反,果蝇高尔基体重新组装和堆积蛋白GRASP55/65(dGRASP)的RNAi敲低概括了clu缺陷,包括αPS2的异常积聚和幼虫运动活性。Clu和dGRASP蛋白都发生物理相互作用,而Clu的缺失会使dGRASP从内质网出口位点移位,这表明Clu与dGRASP协同作用,使αPS2从内质网中的核周亚结构域排出。我们还发现,Clu和dGRASP功能的丧失会导致内质网应激,并且内质网出口位点蛋白Sec16的稳定性在clu突变体中严重受损,从而解释了αPS2在内质网中的积累。值得注意的是,将clu RNAi幼虫暴露于化学伴侣可恢复αPS2传递和功能性内质网出口位点。我们提出,Clu与dGRASP一起可防止内质网应激,因此维持对核周早期分泌途径功能组织至关重要的Sec16稳定性。反过来,这对于果蝇幼虫肌纤维中整合素亚基αPS2的内质网出口至关重要。