The balance of Id3 and E47 determines neural stem/precursor cell differentiation into astrocytes

Id3 和 E47 的平衡决定神经干细胞/前体细胞分化为星形胶质细胞

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作者:Christian Bohrer, Sabrina Pfurr, Könül Mammadzada, Sebastian Schildge, Leandra Plappert, Miriam Hils, Lauriane Pous, Katharina S Rauch, Verónica I Dumit, Dietmar Pfeifer, Jörn Dengjel, Matthias Kirsch, Kristina Schachtrup, Christian Schachtrup

Abstract

Adult neural stem/precursor cells (NSPCs) of the subventricular zone (SVZ) are an endogenous source for neuronal replacement in CNS disease. However, adult neurogenesis is compromised after brain injury in favor of a glial cell fate, which is mainly attributed to changes in the NSPC environment. Yet, it is unknown how this unfavorable extracellular environment translates into a transcriptional program altering NSPC differentiation. Here, we show that genetic depletion of the transcriptional regulator Id3 decreased the number of astrocytes generated from SVZ-derived adult NSPCs in the cortical lesion area after traumatic brain injury. Cortical brain injury resulted in rapid BMP-2 and Id3 up-regulation in the SVZ stem cell niche. Id3(-/-) adult NSPCs failed to differentiate into BMP-2-induced astrocytes, while NSPCs deficient for the Id3-controlled transcription factor E47 readily differentiated into astrocytes in the absence of BMP-2. Mechanistically, E47 repressed the expression of several astrocyte-specific genes in adult NSPCs. These results identify Id3 as the BMP-2-induced transcriptional regulator, promoting adult NSPC differentiation into astrocytes upon CNS injury and reveal a molecular link between environmental changes and NSPC differentiation in the CNS after injury.

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