1Columbia University, 351 Engineering Terr., 1210 Amsterdam Ave., Mail Code 8904, New York, NY 10027, USA.
FASEB J. 2014 Mar;28(3):1157-65. doi: 10.1096/fj.13-240432. Epub 2013 Nov 25.
Primary cilia are single, nonmotile, antenna-like structures extending from the apical membrane of most mammalian cells. They may mediate mechanotransduction, the conversion of external mechanical stimuli into biochemical intracellular signals. Previously we demonstrated that adenylyl cyclase 6 (AC6), a membrane-bound enzyme enriched in primary cilia of MLO-Y4 osteocyte-like cells, may play a role in a primary cilium-dependent mechanism of osteocyte mechanotransduction in vitro. In this study, we determined whether AC6 deletion impairs loading-induced bone formation in vivo. Skeletally mature mice with a global knockout of AC6 exhibited normal bone morphology and responded to osteogenic chemical stimuli similar to wild-type mice. Following ulnar loading over 3 consecutive days, bone formation parameters were assessed using dynamic histomorphometry. Mice lacking AC6 formed significantly less bone than control animals (41% lower bone formation rate). Furthermore, there was an attenuated flow-induced increase in COX-2 mRNA expression levels in primary bone cells isolated from AC6 knockout mice compared to controls (1.3±0.1- vs. 2.6±0.2-fold increase). Collectively, these data indicate that AC6 plays a role in loading-induced bone adaptation, and these findings are consistent with our previous studies implicating primary cilia and AC6 in a novel mechanism of osteocyte mechanotransduction.
初级纤毛是从大多数哺乳动物细胞的顶膜延伸出的单一的、非运动的、天线状结构。它们可能介导机械转导,即将外部机械刺激转化为细胞内生化信号。此前我们证明,富含于 MLO-Y4 破骨细胞样细胞初级纤毛中的膜结合酶腺苷酸环化酶 6(AC6)可能在体外破骨细胞机械转导的初级纤毛依赖性机制中发挥作用。在这项研究中,我们确定了 AC6 缺失是否会损害体内加载诱导的骨形成。全身性敲除 AC6 的骨骼成熟小鼠表现出正常的骨形态,并且对成骨化学刺激的反应与野生型小鼠相似。在连续 3 天桡骨加载后,使用动态组织形态计量学评估骨形成参数。与对照动物相比,缺乏 AC6 的小鼠形成的骨明显减少(骨形成率低 41%)。此外,与对照组相比,从 AC6 敲除小鼠分离的原代骨细胞中 COX-2 mRNA 表达水平的流量诱导增加减弱(分别增加 1.3±0.1- 和 2.6±0.2 倍)。总之,这些数据表明 AC6 在加载诱导的骨适应中发挥作用,这些发现与我们之前的研究一致,该研究表明初级纤毛和 AC6 参与了破骨细胞机械转导的新机制。