Department of Biological Sciences, Neuroscience Graduate Program, University of Southern California, Los Angeles, CA90089, USA.
Dev Biol. 2012 Jul 15;367(2):216-27. doi: 10.1016/j.ydbio.2012.05.014. Epub 2012 May 17.
Bone Morphogenetic Proteins (BMPs) have multiple activities in the developing spinal cord: they specify the identity of the dorsal-most neuronal populations and then direct the trajectories of dorsal interneuron (dI) 1 commissural axons. How are these activities decoded by dorsal neurons to result in different cellular outcomes? Our previous studies have shown that the diverse functions of the BMPs are mediated by the canonical family of BMP receptors and then regulated by specific inhibitory (I) Smads, which block the activity of a complex of Smad second messengers. However, the extent to which this complex translates the different activities of the BMPs in the spinal cord has remained unresolved. Here, we demonstrate that the receptor-activated (R) Smads, Smad1 and Smad5 play distinct roles mediating the abilities of the BMPs to direct cell fate specification and axon outgrowth. Smad1 and Smad5 occupy spatially distinct compartments within the spinal cord, with Smad5 primarily associated with neural progenitors and Smad1 with differentiated neurons. Consistent with this expression profile, loss of function experiments in mouse embryos reveal that Smad5 is required for the acquisition of dorsal spinal neuron identities whereas Smad1 is critical for the regulation of dI1 axon outgrowth. Thus the R-Smads, like the I-Smads, have discrete roles mediating BMP-dependent cellular processes during spinal interneuron development.
骨形态发生蛋白(BMPs)在发育中的脊髓中有多种活性:它们指定背侧神经元群体的身份,然后指导背侧中间神经元(dI)1 连合轴突的轨迹。这些活性如何被背侧神经元解码,从而导致不同的细胞结果?我们之前的研究表明,BMP 家族的不同功能是由经典的 BMP 受体介导的,然后由特定的抑制性(I)Smads 调节,后者阻断 Smad 第二信使复合物的活性。然而,这个复合物在多大程度上翻译了 BMP 在脊髓中的不同活性仍未解决。在这里,我们证明了受体激活的(R)Smads,Smad1 和 Smad5 介导 BMP 指导细胞命运特化和轴突生长的能力中发挥着不同的作用。Smad1 和 Smad5 在脊髓中占据空间上不同的隔室,Smad5 主要与神经前体细胞相关,Smad1 与分化神经元相关。与这种表达模式一致,在小鼠胚胎中的功能丧失实验表明,Smad5 对于获得背侧脊髓神经元身份是必需的,而 Smad1 对于调节 dI1 轴突生长是至关重要的。因此,R-Smads 与 I-Smads 一样,在脊髓中间神经元发育过程中,具有介导 BMP 依赖性细胞过程的离散作用。