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Dual-mode modulation of Smad signaling by Smad-interacting protein Sip1 is required for myelination in the central nervous system

机译:Smad相互作用蛋白Sip1对Smad信号的双模式调节是中枢神经系统髓鞘化所必需的

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摘要

Myelination by oligodendrocytes in the central nervous system (CNS) is essential for proper brain function, yet the molecular determinants that control this process remain poorly understood. The basic helix-loop-helix transcription factors Olig1 and Olig2 promote myelination, whereas bone morphogenetic protein (BMP) and Wnt/β-catenin signaling inhibit myelination. Here we show that these opposing regulators of myelination are functionally linked by the Olig1/2 common target Smad-interacting protein-1 (Sip1). We demonstrate that Sip1 is an essential modulator of CNS myelination. Sip1 represses differentiation inhibitory signals by antagonizing BMP receptor-activated Smad activity while activating crucial oligodendrocyte-promoting factors. Importantly, a key Sip1-activated target, Smad7, is required for oligodendrocyte differentiation and partially rescues differentiation defects caused by Sip1 loss. Smad7 promotes myelination by blocking the BMP- and β-catenin-negative regulatory pathways. Thus, our findings reveal that Sip1-mediated antagonism of inhibitory signaling is critical for promoting CNS myelination and point to new mediators for myelin repair.
机译:中枢神经系统(CNS)中少突胶质细胞的髓鞘形成对于正常的大脑功能至关重要,但是控制该过程的分子决定因素仍然知之甚少。基本的螺旋-环-螺旋转录因子Olig1和Olig2促进髓鞘形成,而骨形态发生蛋白(BMP)和Wnt /β-catenin信号传导抑制髓鞘形成。在这里,我们显示出这些相反的髓鞘调节因子通过Olig1 / 2共同靶标Smad相互作用蛋白1(Sip1)功能连接。我们证明Sip1是中枢神经系统髓鞘的重要调节剂。 Sip1通过拮抗BMP受体激活的Smad活性而激活关键的少突胶质细胞促进因子,从而抑制分化抑制信号。重要的是,少突胶质细胞分化需要关键的Sip1激活靶标Smad7,并部分挽救由Sip1丢失引起的分化缺陷。 Smad7通过阻断BMP和β-catenin负调控途径来促进髓鞘形成。因此,我们的发现表明,Sip1介导的抑制性信号传导拮抗作用对于促进CNS髓鞘形成至关重要,并指出了髓鞘修复的新介体。

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