Tsuji Kunikazu, Bandyopadhyay Amitabha, Harfe Brian D, Cox Karen, Kakar Sanjeev, Gerstenfeld Louis, Einhorn Thomas, Tabin Clifford J, Rosen Vicki
Department of Developmental Biology, Harvard School of Dental Medicine, Boston, Massachusetts 02115, USA.
Nat Genet. 2006 Dec;38(12):1424-9. doi: 10.1038/ng1916. Epub 2006 Nov 12.
Adult bones have a notable regenerative capacity. Over 40 years ago, an intrinsic activity capable of initiating this reparative response was found to reside within bone itself, and the term bone morphogenetic protein (BMP) was coined to describe the molecules responsible for it. A family of BMP proteins was subsequently identified, but no individual BMP has been shown to be the initiator of the endogenous bone repair response. Here we demonstrate that BMP2 is a necessary component of the signaling cascade that governs fracture repair. Mice lacking the ability to produce BMP2 in their limb bones have spontaneous fractures that do not resolve with time. In fact, in bones lacking BMP2, the earliest steps of fracture healing seem to be blocked. Although other osteogenic stimuli are still present in the limb skeleton of BMP2-deficient mice, they cannot compensate for the absence of BMP2. Collectively, our results identify BMP2 as an endogenous mediator necessary for fracture repair.
成年骨骼具有显著的再生能力。40多年前,人们发现骨骼自身具有一种能够引发这种修复反应的内在活性,并创造了“骨形态发生蛋白”(BMP)这一术语来描述负责此反应的分子。随后鉴定出了一个BMP蛋白家族,但尚未有单个BMP被证明是内源性骨修复反应的启动因子。在此,我们证明BMP2是控制骨折修复的信号级联反应的必要组成部分。四肢骨骼无法产生BMP2的小鼠会出现自发性骨折,且不会随时间愈合。事实上,在缺乏BMP2的骨骼中,骨折愈合的最早步骤似乎被阻断了。尽管BMP2缺陷小鼠的四肢骨骼中仍存在其他成骨刺激因素,但它们无法弥补BMP2的缺失。总体而言,我们的研究结果表明BMP2是骨折修复所必需的内源性介质。