School of Engineering and Materials Science, Queen Mary University of London, London, UK.
FASEB J. 2012 Apr;26(4):1663-71. doi: 10.1096/fj.11-193649. Epub 2012 Jan 5.
We investigated the role of the chondrocyte primary cilium in mechanotransduction events related to cartilage extracellular matrix synthesis. We generated conditionally immortalized wild-type (WT) and IFT88(orpk) (ORPK) mutant chondrocytes that lack primary cilia and assessed intracellular Ca(2+) signaling, extracellular matrix synthesis, and ATP release in response to physiologically relevant compressive strains in a 3-dimensional chondrocyte culture system. All conditions were compared to unloaded controls. We found that cilia were required for compression-induced Ca(2+) signaling mediated by ATP release, and an associated up-regulation of aggrecan mRNA and sulfated glycosaminosglycan secretion. However, chondrocyte cilia were not the initial mechanoreceptors, since both WT and ORPK cells showed mechanically induced ATP release. Rather, we found that primary cilia were required for downstream ATP reception, since ORPK cells did not elicit a Ca(2+) response to exogenous ATP even though WT and ORPK cells express similar levels of purine receptors. We suggest that purinergic Ca(2+) signaling may be regulated by polycystin-1, since ORPK cells only expressed the C-terminal tail. This is the first study to demonstrate that primary cilia are essential organelles for cartilage mechanotransduction, as well as identifying a novel role for primary cilia not previously reported in any other cell type, namely cilia-mediated control of ATP reception.
我们研究了软骨细胞初级纤毛在与软骨细胞外基质合成相关的机械转导事件中的作用。我们生成了条件永生化的野生型(WT)和IFT88(orpk)(ORPK)突变型软骨细胞,这些细胞缺乏初级纤毛,并在 3 维软骨细胞培养系统中评估了生理相关压缩应变下的细胞内 Ca(2+)信号、细胞外基质合成和 ATP 释放。所有条件均与未加载对照进行比较。我们发现纤毛对于由 ATP 释放介导的压缩诱导的 Ca(2+)信号是必需的,并且与聚集蛋白聚糖 mRNA 和硫酸化糖胺聚糖分泌的上调相关。然而,软骨细胞纤毛不是最初的机械感受器,因为 WT 和 ORPK 细胞都显示出机械诱导的 ATP 释放。相反,我们发现初级纤毛对于下游的 ATP 接收是必需的,因为 ORPK 细胞即使在 WT 和 ORPK 细胞表达相似水平的嘌呤受体的情况下,也不会对外源性 ATP 产生 Ca(2+)反应。我们认为嘌呤能 Ca(2+)信号可能受多囊蛋白-1 调节,因为 ORPK 细胞仅表达 C 末端尾部。这是第一项表明初级纤毛是软骨细胞机械转导所必需的细胞器的研究,并且还确定了初级纤毛在其他任何细胞类型中以前没有报道过的新作用,即纤毛介导的 ATP 接收控制。