Nippi Research Institute of Biomatrix, Toride, Ibaraki 302-0017, Japan.
J Biol Chem. 2010 Sep 24;285(39):29941-50. doi: 10.1074/jbc.M109.094607. Epub 2010 Jul 20.
A coiled-coil microtubule-bundling protein, p180, was originally reported as a ribosome-binding protein on the rough endoplasmic reticulum (ER) and is highly expressed in secretory tissues. Recently, we reported a novel role for p180 in the trans-Golgi network (TGN) expansion following stimulated collagen secretion. Here, we show that p180 plays a key role in procollagen biosynthesis and secretion in diploid fibroblasts. Depletion of p180 caused marked reductions of secreted collagens without significant loss of the ER membrane or mRNA. Metabolic labeling experiments revealed that the procollagen biosynthetic activity was markedly affected following p180 depletion. Moreover, loss of p180 perturbs ascorbate-stimulated de novo biosynthesis mainly in the membrane fraction with a preferential secretion defect of large proteins. At the EM level, one of the most prominent morphological features of p180-depleted cells was insufficient ribosome association on the ER membranes. In contrast, the ER of control cells was studded with numerous ribosomes, which were further enhanced by ascorbate. Similarly biochemical analysis confirmed that levels of membrane-bound ribosomes were altered in a p180-dependent manner. Taken together, our data suggest that p180 plays crucial roles in enhancing collagen biosynthesis at the entry site of the secretory compartments by a novel mechanism that mainly involves facilitating ribosome association on the ER.
一种卷曲螺旋微管束蛋白 p180,最初被报道为内质网(ER)上的核糖体结合蛋白,在分泌组织中高度表达。最近,我们报道了 p180 在胶原分泌刺激后跨高尔基网络(TGN)扩张中的一个新作用。在这里,我们表明 p180 在二倍体成纤维细胞的原胶原生物合成和分泌中起关键作用。p180 的耗竭导致分泌胶原的显著减少,而 ER 膜或 mRNA 没有明显丢失。代谢标记实验表明,p180 耗竭后原胶原生物合成活性明显受到影响。此外,p180 的缺失扰乱了抗坏血酸刺激的从头生物合成,主要影响膜部分,大蛋白的分泌缺陷更为明显。在 EM 水平上,p180 耗竭细胞最显著的形态学特征之一是 ER 膜上核糖体的结合不足。相比之下,对照细胞的 ER 上点缀着许多核糖体,而抗坏血酸进一步增强了这些核糖体。同样,生化分析证实,膜结合核糖体的水平以 p180 依赖的方式发生改变。总之,我们的数据表明,p180 通过一种新的机制在分泌隔室进入部位增强胶原生物合成中发挥关键作用,该机制主要涉及促进 ER 上核糖体的结合。