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  • Transcription factor Zfp276 drives oligodendroglial differentiation and myelination by switching off the progenitor cell program.

Transcription factor Zfp276 drives oligodendroglial differentiation and myelination by switching off the progenitor cell program.

Nucleic acids research (2022-02-10)
Tim Aberle, Sandra Piefke, Simone Hillgärtner, Ernst R Tamm, Michael Wegner, Melanie Küspert
摘要

In oligodendrocytes of the vertebrate central nervous system a complex network of transcriptional regulators is required to ensure correct and timely myelination of neuronal axons. Here we identify Zfp276, the only mammalian ZAD-domain containing zinc finger protein, as a transcriptional regulator of oligodendrocyte differentiation and central myelination downstream of Sox10. In the central nervous system, Zfp276 is exclusively expressed in mature oligodendrocytes. Oligodendroglial deletion of Zfp276 led to strongly reduced expression of myelin genes in the early postnatal mouse spinal cord. Retroviral overexpression of Zfp276 in cultured oligodendrocyte precursor cells induced precocious expression of maturation markers and myelin genes, further supporting its role in oligodendroglial differentiation. On the molecular level, Zfp276 directly binds to and represses Sox10-dependent gene regulatory regions of immaturity factors and functionally interacts with the transcriptional repressor Zeb2 to enable fast transition of oligodendrocytes to the myelinating stage.

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层粘连蛋白 来源于 Engelbreth-Holm-Swarm 小鼠肉瘤基底膜, 1-2 mg/mL in Tris-buffered saline, 0.2 μm filtered, BioReagent, suitable for cell culture
Roche
抗-GFP, from mouse IgG1κ (clones 7.1 and 13.1)
Sigma-Aldrich
Duolink® 原位PLA® 检测试剂盒,橘色染料,探针识别小鼠/兔来源一抗
Sigma-Aldrich
鲁米诺 钠盐