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Roles of Interaction between CCN2 and Rab14 in Aggrecan Production by Chondrocytes

机译:CCN2和Rab14之间的相互作用在软骨细胞聚集蛋白生产中的作用

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摘要

To identify proteins that cooperate with cellular communication network factor 2 (CCN2), we carried out GAL4-based yeast two-hybrid screening using a cDNA library derived from the chondrocytic cell line HCS-2/8. Rab14 GTPase (Rab14) polypeptide was selected as a CCN2-interactive protein. The interaction between CCN2 and Rab14 in HCS-2/8 cells was confirmed using the in situ proximity ligation assay. We also found that CCN2 interacted with Rab14 through its IGFBP-like domain among the four domains in CCN2 protein. To detect the colocalization between CCN2 and Rab14 in the cells in detail, CCN2, wild-type Rab14 (Rab14WT), a constitutive active form (Rab14CA), and a dominant negative form (Rab14DN) of Rab14 were overexpressed in monkey kidney-tissue derived COS7 cells. Ectopically overexpressed Rab14 showed a diffuse cytosolic distribution in COS7 cells; however, when Rab14WT was overexpressed with CCN2, the Rab14WT distribution changed to dots that were evenly distributed within the cytosol, and both Rab14 and CCN2 showed clear colocalization. When Rab14CA was overexpressed with CCN2, Rab14CA and CCN2 also showed good localization as dots, but their distribution was more widespread within cytosol. The coexpression of Rab14DN and CCN2 also showed a dotted codistribution but was more concentrated in the perinuclear area. Quantitative reverse transcription polymerase chain reaction (qRT-PCR) analysis revealed that the reduction in or mRNA by their respective siRNA significantly enhanced the expression of ER stress markers, and mRNA in HCS-2/8 chondrocytic cells, suggesting that ER and Golgi stress were induced by the inhibition of membrane vesicle transfer via the suppression of CCN2 or Rab14. Moreover, to study the effect of the interaction between CCN2 and its interactive protein Rab14 on proteoglycan synthesis, we overexpressed Rab14WT or Rab14CA or Rab14DN in HCS-2/8 cells and found that the overexpression of Rab14DN decreased the extracellular proteoglycan accumulation more than the overexpression of Rab14WT/CA did in the chondrocytic cells. These results suggest that intracellular CCN2 is associated with Rab14 on proteoglycan-containing vesicles during their transport from the Golgi apparatus to endosomes in chondrocytes and that this association may play a role in proteoglycan secretion by chondrocytes.
机译:为了鉴定与细胞通讯网络因子2(CCN2)协同作用的蛋白质,我们使用了来自软骨细胞HCS-2 / 8的cDNA文库,进行了基于GAL4的酵母双杂交筛选。选择Rab14 GTPase(Rab14)多肽作为CCN2互动蛋白。使用原位邻近连接测定法证实了HCS-2 / 8细胞中CCN2和Rab14之间的相互作用。我们还发现,CCN2通过CCN2蛋白的四个结构域中的IGFBP样结构域与Rab14相互作用。要详细检测细胞中CCN2和Rab14之间的共定位,在猴肾组织来源的细胞中过表达了CCN2,野生型Rab14(Rab14WT),本构活性形式(Rab14CA)和显性负型(Rab14DN)。 COS7细胞。异位过表达的Rab14在COS7细胞中显示出弥漫性胞质分布。但是,当Rab14WT与CCN2一起过表达时,Rab14WT的分布变为在胞质溶胶中均匀分布的点,并且Rab14和CCN2均显示明显的共定位。当Rab14CA与CCN2过表达时,Rab14CA和CCN2也显示为点状良好定位,但它们在细胞质中的分布更为广泛。 Rab14DN和CCN2的共表达也显示出点状共分布,但更集中在核周区域。定量逆转录聚合酶链反应(qRT-PCR)分析显示,各自siRNA降低或mRNA均显着增强了ER应激标志物的表达,并增强了HCS-2 / 8软骨细胞的mRNA表达,提示ER和高尔基体应激是通过抑制CCN2或Rab14抑制膜囊泡转移所致。此外,为研究CCN2及其相互作用蛋白Rab14之间的相互作用对蛋白聚糖合成的影响,我们在HCS-2 / 8细胞中过表达Rab14WT或Rab14CA或Rab14DN,发现Rab14DN的过量表达比细胞过表达更多地减少了细胞外蛋白聚糖的积累Rab14WT / CA的表达在软骨细胞中起作用。这些结果表明,细胞内CCN2与含蛋白多糖的囊泡中的Rab14从高尔基体转运到软骨细胞的内体期间相关,并且这种联系可能在软骨细胞分泌蛋白聚糖中起作用。

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