Brandon Elizabeth, Gao Yasheng, Garcia-Mata Rafael, Alvarez Cecilia, Sztul Elizabeth
Department of Cell Biology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Eur J Cell Biol. 2003 Aug;82(8):411-20. doi: 10.1078/0171-9335-00327.
The cytosolic phosphoprotein p115 is required for ER to Golgi traffic and for Golgi reassembly after mitosis. In cells, p115 is localized to ER exit sites, ER-Golgi Intermediate Compartment (ERGIC) and the Golgi, and cycles between these compartments. P115 is phosphorylated on serine 942, and this modification appears to control p115 association with membranes. P115 is likely to function by reversibly interacting with effector proteins, and in the Golgi, two proteins, GM130 and giantin, have been shown to bind p115. The GM130-p115 and the giantin-p115 interactions are enhanced by p115 phosphorylation. Phosphorylation appears to be essential for p115 function, since substitutions of serine 942 abolish p115 ability to sustain cisternal reformation in an in vitro assay reconstituting Golgi reassembly after mitosis. Here, we explored how phosphorylation of p115 affects its intracellular targeting to distinct cellular compartments, and its function in secretory traffic. We generated phosphorylation mutants of p115 and tested their ability to target to ER exit sites, ERGIC and the Golgi. In addition, we explored whether expression of the mutants causes disruption of Golgi structure and perturbs ER-Golgi traffic of a VSV-G cargo protein.
胞质磷蛋白p115是内质网到高尔基体运输以及有丝分裂后高尔基体重新组装所必需的。在细胞中,p115定位于内质网出口位点、内质网-高尔基体中间区室(ERGIC)和高尔基体,并在这些区室之间循环。P115在丝氨酸942处被磷酸化,这种修饰似乎控制着p115与膜的结合。P115可能通过与效应蛋白可逆性相互作用来发挥功能,在高尔基体中,已证明两种蛋白GM130和巨蛋白可与p115结合。p115磷酸化增强了GM130-p115和巨蛋白-p115之间的相互作用。磷酸化似乎对p115的功能至关重要,因为在有丝分裂后高尔基体重新组装的体外试验中,丝氨酸942的取代消除了p115维持潴泡重塑的能力。在此,我们探究了p115的磷酸化如何影响其在细胞内靶向不同细胞区室以及其在分泌运输中的功能。我们构建了p115的磷酸化突变体,并测试了它们靶向内质网出口位点、ERGIC和高尔基体的能力。此外,我们还探究了这些突变体的表达是否会导致高尔基体结构破坏以及扰乱水泡性口炎病毒糖蛋白(VSV-G)货物蛋白的内质网-高尔基体运输。