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A distal Schwann cell-specific enhancer mediates axonal regulation of the Oct-6 transcription factor during peripheral nerve development and regeneration

机译:在周围神经发育和再生过程中远端施旺细胞特异性增强剂介导了Oct-6转录因子的轴突调节。

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摘要

The POU domain transcription factor Oct-6 is a major regulator of Schwann cell differentiation and myelination. During nerve development and regeneration, expression of Oct-6 is under the control of axonal signals. Identification of the cis-acting elements necessary for Oct-6 gene regulation is an important step in deciphering the complex signalling between Schwann cells and axons governing myelination. Here we show that a fragment distal to the Oct-6 gene, containing two DNase I-hypersensitive sites, acts as the Oct-6 Schwann cell-specific enhancer (SCE). The SCE is sufficient to drive spatially and temporally correct expression, during both normal peripheral nerve development and regeneration. We further demonstrate that a tagged version of Oct-6, driven by the SCE, rescues the peripheral nerve phenotype of Oct-6-deficient mice. Thus, our isolation and characterization of the Oct-6 SCE provides the first description of a cis-acting genetic element that responds to converging signalling pathways to drive myelination in the peripheral nervous system.
机译:POU域转录因子Oct-6是雪旺氏细胞分化和髓鞘形成的主要调节因子。在神经发育和再生过程中,Oct-6的表达受轴突信号的控制。确定Oct-6基因调控所必需的顺式作用元件是解密施旺细胞与控制髓鞘形成的轴突之间复杂信号传导的重要步骤。在这里,我们显示了Oct-6基因远端的一个片段,其中包含两个DNase I超敏感位点,充当Oct-6 Schwann细胞特异性增强剂(SCE)。在正常的周围神经发育和再生过程中,SCE足以驱动时空正确的表达。我们进一步证明,由SCE驱动的Oct-6的标记版本可以挽救Oct-6缺陷型小鼠的周围神经表型。因此,我们对Oct-6 SCE的分离和表征提供了对顺式作用遗传元件的首次描述,该元件响应会聚的信号传导途径来驱动周围神经系统的髓鞘形成。

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