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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Sox13 functionally complements the related Sox5 and Sox6 as important developmental modulators in mouse spinal cord oligodendrocytes
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Sox13 functionally complements the related Sox5 and Sox6 as important developmental modulators in mouse spinal cord oligodendrocytes

机译:Sox13在功能上补充了相关的Sox5和Sox6,它们是小鼠脊髓少突胶质细胞中的重要发育调节剂

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摘要

The role of transcription factor Sox13, which together with Sox5 and Sox6 belongs to the SoxD family, is only poorly characterized in central nervous system development. Therefore, we analysed whether Sox13 expression and function overlaps with or differs from that of its close relatives Sox5 and Sox6. In the developing mouse spinal cord, we found Sox13 predominantly expressed in neuroepithelial precursors, oligodendroglial and astroglial cells. The substantially overlapping expression with Sox5 and Sox6 in oligodendroglial cells prompted us to study potential roles during specification, lineage progression and differentiation of oligodendrocytes. In contrast to Sox5 and Sox6, Sox13 expression continues after differentiation and even increases in myelinating oligodendrocytes. Sox13 deletion did not interfere with oligodendroglial development, which was normal in Sox13-deficient mice. However, the premature differentiation of oligodendrocyte precursors triggered by loss of Sox6 was slightly more prominent in Sox6/Sox13 double-deficient mice. Sox13 can bind to the same sites in myelin gene promoters as Sox5 and Sox6 invitro. Reporter gene assays furthermore reveal a similar antagonizing effect on Sox10-dependent transactivation of myelin gene promoters as previously shown for Sox5 and Sox6. This argues that Sox13 is functionally redundant with the other SoxD proteins and complements Sox5 and Sox6 in their role as important modulators of oligodendrocyte development.
机译:转录因子Sox13(与Sox5和Sox6一起属于SoxD家族)的作用在中枢神经系统发育中的特征很少。因此,我们分析了Sox13的表达和功能是否与其近亲Sox5和Sox6重叠或不同。在发育中的小鼠脊髓中,我们发现Sox13主要在神经上皮前体,少突胶质细胞和星形胶质细胞中表达。在少突胶质细胞中与Sox5和Sox6基本上重叠的表达促使我们研究少突胶质细胞的规格,谱系进展和分化过程中的潜在作用。与Sox5和Sox6相反,Sox13在分化后仍继续表达,甚至在髓鞘少突胶质细胞中增加。 Sox13缺失不干扰少突胶质细胞的发育,这在Sox13缺陷小鼠中是正常的。但是,在Sox6 / Sox13双重缺陷小鼠中,由Sox6丢失引发的少突胶质细胞前体的过早分化更为明显。 Sox13可以与髓鞘基因启动子中的Sox5和Sox6体外结合相同位点。记者基因测定法进一步揭示了对髓磷脂基因启动子的Sox10依赖性反式激活具有类似的拮抗作用,如先前对Sox5和Sox6所示。这表明Sox13与其他SoxD蛋白在功能上是多余的,并且在作为少突胶质细胞发育的重要调节剂的作用中补充了Sox5和Sox6。

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