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Rab GTPase 介导的抗坏血酸刺激成骨细胞中前胶原的运输。

Rab GTPase mediated procollagen trafficking in ascorbic acid stimulated osteoblasts.

机构信息

Department of Cell and Systems Biology, University of Tronto Scarborought, Toronto, Ontario, Canada.

出版信息

PLoS One. 2012;7(9):e46265. doi: 10.1371/journal.pone.0046265. Epub 2012 Sep 26.

Abstract

Despite advances in investigating functional aspects of osteoblast (OB) differentiation, especially studies on how bone proteins are deposited and mineralized, there has been little research on the intracellular trafficking of bone proteins during OB differentiation. Collagen synthesis and secretion is the major function of OBs and is markedly up-regulated upon ascorbic acid (AA) stimulation, significantly more so than in fibroblast cells. Understanding the mechanism by which collagen is mobilized in specialized OB cells is important for both basic cell biology and diseases involving defects in bone protein secretion and deposition. Protein trafficking along the exocytic and endocytic pathways is aided by many molecules, with Rab GTPases being master regulators of vesicle targeting. In this study, we used microarray analysis to identify the Rab GTPases that are up-regulated during a 5-day AA differentiation of OBs, namely Rab1, Rab3d, and Rab27b. Further, we investigated the role of identified Rabs in regulating the trafficking of collagen from the site of synthesis in the ER to the Golgi and ultimately to the plasma membrane utilizing Rab dominant negative (DN) expression. We also observed that experimental halting of biosynthetic trafficking by these mutant Rabs initiated proteasome-mediated degradation of procollagen and ceased global protein translation. Acute expression of Rab1 and Rab3d DN constructs partially alleviated this negative feedback mechanism and resulted in impaired ER to Golgi trafficking of procollagen. Similar expression of Rab27b DN constructs resulted in dispersed collagen vesicles which may represent failed secretory vesicles sequestered in the cytosol. A significant and strong reduction in extracellular collagen levels was also observed implicating the functional importance of Rab1, Rab3d and Rab27b in these major collagen-producing cells.

摘要

尽管在研究成骨细胞 (OB) 分化的功能方面取得了进展,尤其是关于骨蛋白如何沉积和矿化的研究,但对于 OB 分化过程中骨蛋白的细胞内运输仍鲜有研究。胶原合成和分泌是 OB 的主要功能,在抗坏血酸 (AA) 刺激下明显上调,上调幅度明显高于成纤维细胞。了解胶原在专门的 OB 细胞中被动员的机制对于基础细胞生物学和涉及骨蛋白分泌和沉积缺陷的疾病都很重要。许多分子有助于蛋白沿着外排和内吞途径运输,Rab GTPases 是囊泡靶向的主要调节剂。在这项研究中,我们使用微阵列分析鉴定了在 OB 分化的第 5 天 AA 刺激期间上调的 Rab GTPases,即 Rab1、Rab3d 和 Rab27b。此外,我们利用 Rab 显性负 (DN) 表达,研究了鉴定的 Rab 在调节胶原从内质网合成部位到高尔基体再到质膜的运输中的作用。我们还观察到,这些突变 Rab 实验性地阻断生物合成运输,会引发前胶原的蛋白酶体介导降解并停止全局蛋白翻译。Rab1 和 Rab3d DN 构建体的急性表达部分缓解了这种负反馈机制,并导致前胶原的内质网到高尔基体运输受损。类似地表达 Rab27b DN 构建体导致分散的胶原囊泡,这可能代表在细胞质中被隔离的失败分泌囊泡。还观察到细胞外胶原水平显著和强烈降低,这表明 Rab1、Rab3d 和 Rab27b 在这些主要胶原产生细胞中具有重要功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ea6/3458846/747ceef7289c/pone.0046265.g001.jpg

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