Intini Giuseppe, Nyman Jeffry S
Department of Oral Medicine, Infection, and Immunity, Harvard School of Dental Medicine, 188 Longwood Avenue, Boston, MA 02115, USA; Harvard Stem Cell Institute, 185 Cambridge Street, Boston, MA 02114, USA.
Department of Orthopaedics and Rehabilitation, Vanderbilt University Medical Center, Nashville, TN 37232, USA; Department of Veterans Affairs, Tennessee Valley Healthcare System, Nashville, TN, USA.
Bone. 2015 Jun;75:151-60. doi: 10.1016/j.bone.2015.01.008. Epub 2015 Jan 17.
Bone fractures remain a serious health burden and prevention and enhanced healing of fractures have been obtained by augmenting either BMP or Wnt signaling. However, whether BMP and Wnt signaling are both required or are self-sufficient for anabolic and fracture healing activities has never been fully elucidated. Mice haploinsufficient for Dkk1 (Dkk1(+/-)) exhibit a high bone mass phenotype due to an up-regulation of canonical Wnt signaling while mice lacking Bmp2 expression in the limbs (Bmp2(c/c);Prx1::cre) succumb to spontaneous fracture and are unable to initiate fracture healing; combined, these mice offer an opportunity to examine the requirement for activated BMP signaling on the anabolic and fracture healing activity of Wnts. When Dkk1(+/-) mice were crossed with Bmp2(c/c);Prx1::cre mice, the offspring bearing both genetic alterations were unable to increase bone mass and heal fractures, indicating that increased canonical Wnt signaling is unable to exploit its activity in absence of Bmp2. Thus, our data suggest that BMP signaling is required for Wnt-mediated anabolic activity and that therapies aimed at preventing fractures and fostering fracture repair may need to target both pathways for maximal efficacy.
骨折仍然是一个严重的健康负担,通过增强骨形态发生蛋白(BMP)或Wnt信号传导已实现骨折的预防和愈合增强。然而,BMP和Wnt信号传导对于合成代谢和骨折愈合活动是否都是必需的或是否足以发挥作用,从未得到充分阐明。由于经典Wnt信号上调,Dkk1基因单倍不足的小鼠(Dkk1(+/-))表现出高骨量表型,而四肢缺乏Bmp2表达的小鼠(Bmp2(c/c);Prx1::cre)易发生自发性骨折且无法启动骨折愈合;综合来看,这些小鼠为研究激活的BMP信号对Wnt的合成代谢和骨折愈合活动的需求提供了机会。当Dkk1(+/-)小鼠与Bmp2(c/c);Prx1::cre小鼠杂交时,同时携带这两种基因改变的后代无法增加骨量并愈合骨折,这表明在缺乏Bmp2的情况下,增加的经典Wnt信号无法发挥其作用。因此,我们的数据表明BMP信号传导是Wnt介导的合成代谢活动所必需的,旨在预防骨折和促进骨折修复的治疗可能需要针对这两条途径以达到最大疗效。