Bone and Joint Rehabilitation R&D Center, Department of Veterans Affairs, Palo Alto, California, United States of America.
PLoS One. 2012;7(3):e33368. doi: 10.1371/journal.pone.0033368. Epub 2012 Mar 12.
Primary cilia, solitary microtubule-based structures that grow from the centriole and extend into the extracellular space, have increasingly been implicated as sensors of a variety of biochemical and biophysical signals. Mutations in primary cilium-related genes have been linked to a number of rare developmental disorders as well as dysregulation of cell proliferation. We propose that primary cilia are also important in mechanically regulated bone formation in adults and that their malfunction could play a role in complex multi-factorial bone diseases, such as osteoporosis. In this study, we generated mice with an osteoblast- and osteocyte-specific knockout of Kif3a, a subunit of the kinesin II intraflagellar transport (IFT) protein; IFT is required for primary cilia formation, maintenance, and function. These Colα1(I) 2.3-Cre;Kif3a(fl/fl) mice exhibited no obvious morphological skeletal abnormalities. Skeletally mature Colα1(I) 2.3-Cre;Kif3a(fl/fl) and control mice were exposed to 3 consecutive days of cyclic axial ulna loading, which resulted in a significant increase in bone formation in both the conditional knockouts and controls. However, Colα1(I) 2.3-Cre;Kif3a(fl/fl) mice did exhibit decreased formation of new bone in response to mechanical ulnar loading compared to control mice. These results suggest that primary cilia act as cellular mechanosensors in bone and that their function may be critical for the regulation of bone physiology due to mechanical loading in adults.
初级纤毛是一种从中心粒生长并延伸到细胞外空间的单一微管结构,越来越多地被认为是多种生化和生物物理信号的传感器。初级纤毛相关基因的突变与许多罕见的发育障碍以及细胞增殖失调有关。我们提出,初级纤毛在成人中机械调节的骨形成中也很重要,它们的功能障碍可能在复杂的多因素骨病中发挥作用,如骨质疏松症。在这项研究中,我们生成了骨细胞和骨细胞特异性敲除 Kif3a 的小鼠,Kif3a 是驱动蛋白 II 内鞭毛运输(IFT)蛋白的亚基;IFT 是初级纤毛形成、维持和功能所必需的。这些 Colα1(I) 2.3-Cre;Kif3a(fl/fl) 小鼠没有明显的形态骨骼异常。骨骼成熟的 Colα1(I) 2.3-Cre;Kif3a(fl/fl) 和对照小鼠接受了连续 3 天的轴向尺骨周期性加载,这导致条件性敲除小鼠和对照组的骨形成都显著增加。然而,与对照组相比,Colα1(I) 2.3-Cre;Kif3a(fl/fl) 小鼠在机械尺骨加载下新骨形成的减少。这些结果表明,初级纤毛在骨骼中充当细胞机械感受器,其功能对于成人因机械加载而调节骨骼生理学可能至关重要。