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Sema3A 通过感觉神经支配调节骨量积累。

Sema3A regulates bone-mass accrual through sensory innervations.

机构信息

Department of Internal Medicine, School of Medicine, Keio University, Shinanomachi 35, Shinjyuku-ku, Tokyo 160-8582, Japan.

出版信息

Nature. 2013 May 23;497(7450):490-3. doi: 10.1038/nature12115. Epub 2013 May 5.

Abstract

Semaphorin 3A (Sema3A) is a diffusible axonal chemorepellent that has an important role in axon guidance. Previous studies have demonstrated that Sema3a(-/-) mice have multiple developmental defects due to abnormal neuronal innervations. Here we show in mice that Sema3A is abundantly expressed in bone, and cell-based assays showed that Sema3A affected osteoblast differentiation in a cell-autonomous fashion. Accordingly, Sema3a(-/-) mice had a low bone mass due to decreased bone formation. However, osteoblast-specific Sema3A-deficient mice (Sema3acol1(-/-) and Sema3aosx(-/-) mice) had normal bone mass, even though the expression of Sema3A in bone was substantially decreased. In contrast, mice lacking Sema3A in neurons (Sema3asynapsin(-/-) and Sema3anestin(-/-) mice) had low bone mass, similar to Sema3a(-/-) mice, indicating that neuron-derived Sema3A is responsible for the observed bone abnormalities independent of the local effect of Sema3A in bone. Indeed, the number of sensory innervations of trabecular bone was significantly decreased in Sema3asynapsin(-/-) mice, whereas sympathetic innervations of trabecular bone were unchanged. Moreover, ablating sensory nerves decreased bone mass in wild-type mice, whereas it did not reduce the low bone mass in Sema3anestin(-/-) mice further, supporting the essential role of the sensory nervous system in normal bone homeostasis. Finally, neuronal abnormalities in Sema3a(-/-) mice, such as olfactory development, were identified in Sema3asynasin(-/-) mice, demonstrating that neuron-derived Sema3A contributes to the abnormal neural development seen in Sema3a(-/-) mice, and indicating that Sema3A produced in neurons regulates neural development in an autocrine manner. This study demonstrates that Sema3A regulates bone remodelling indirectly by modulating sensory nerve development, but not directly by acting on osteoblasts.

摘要

信号蛋白 3A(Sema3A)是一种可扩散的轴突化学排斥物,在轴突导向中具有重要作用。先前的研究表明,由于神经元的异常神经支配,Sema3a(-/-) 小鼠有多种发育缺陷。在这里,我们在小鼠中表明 Sema3A 在骨骼中大量表达,并且基于细胞的测定表明 Sema3A 以细胞自主的方式影响成骨细胞分化。因此,由于成骨形成减少,Sema3a(-/-) 小鼠的骨量减少。然而,成骨细胞特异性 Sema3A 缺陷小鼠(Sema3acol1(-/-) 和 Sema3aosx(-/-) 小鼠)的骨量正常,尽管骨骼中 Sema3A 的表达显著降低。相比之下,神经元中缺乏 Sema3A 的小鼠(Sema3asynapsin(-/-) 和 Sema3anestin(-/-) 小鼠)的骨量减少,类似于 Sema3a(-/-) 小鼠,表明神经元来源的 Sema3A 负责观察到的骨骼异常,而与骨骼中 Sema3A 的局部作用无关。事实上,Sema3asynapsin(-/-) 小鼠的小梁骨感觉神经支配的数量显著减少,而小梁骨的交感神经支配不变。此外,破坏感觉神经会减少野生型小鼠的骨量,而在 Sema3anestin(-/-) 小鼠中进一步降低低骨量则没有减少,支持感觉神经系统在正常骨稳态中的重要作用。最后,在 Sema3a(-/-) 小鼠中鉴定到 Sema3asynasin(-/-) 小鼠中的嗅觉发育等神经元异常,表明神经元来源的 Sema3A 有助于 Sema3a(-/-) 小鼠中观察到的异常神经发育,并表明神经元中产生的 Sema3A 以自分泌方式调节神经发育。这项研究表明,Sema3A 通过调节感觉神经发育间接调节骨重塑,而不是直接作用于成骨细胞。

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