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Neurogenic to Gliogenic Fate Transition Perturbed by Loss of HMGB2

机译:HMGB2丢失会扰乱神经源性至胶质形成的命运。

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摘要

Mouse cortical development relies heavily on a delicate balance between neurogenesis and gliogenesis. The lateral ventricular zone produces different classes of excitatory pyramidal cells until just before birth, when the production of astroglia begins to prevail. Epigenetic control of this fate shift is of critical importance and chromatin regulatory elements driving neuronal or astroglial development play an vital role. Different classes of chromatin binding proteins orchestrate the transcriptional repression of neuronal-specific genes, while allowing for the activation of astrocyte-specific genes. Through proteomic analysis of embryonic neural progenitor cells (NPCs) our group had previously identified high mobility group B2 (HMGB2), a chromatin protein dynamically expressed throughout embryonic development. In the current study using cultures of perinatal NPCs from HMGB2+/+ and HMGB2-/- mice we discovered that vital elements of the polycomb group (PcG) epigenetic complexes polycomb repressive complexes 1 and 2 (PRC1/2) were downregulated during the differentiation process of HMGB2-null NPCs. These epigenetic changes led to downstream changes in specific histone modification levels, specifically the trimethylation of H3K27, and a subsequent shift in the perinatal neurogenesis to gliogenesis fate transition. Collectively these results demonstrate that chromatin binding proteins, such as HMGB2, can have significant effects on the epigenetic landscape of perinatal neural stem/progenitor cells.
机译:小鼠皮质的发育在很大程度上取决于神经发生和神经胶质发生之间的微妙平衡。侧脑室区会产生不同类型的兴奋性锥体细胞,直到出生之前即开始占星。这种命运转变的表观遗传控制至关重要,驱动神经元或星形胶质细胞发育的染色质调节元件起着至关重要的作用。染色质结合蛋白的不同类别协调神经元特异性基因的转录抑制,同时允许星形胶质细胞特异性基因的激活。通过对胚胎神经祖细胞(NPC)的蛋白质组学分析,我们的研究小组先前已鉴定出高迁移率B2组(HMGB2),即在整个胚胎发育过程中动态表达的染色质蛋白。在当前的研究中,使用来自HMGB2 + / + 和HMGB2 -//-小鼠的围产期NPC的培养物,我们发现多梳组(PcG)表观遗传复合体的重要成分对多梳具有抑制作用复合物1和2(PRC1 / 2)在HMGB2空NPC分化过程中被下调。这些表观遗传学变化导致特定组蛋白修饰水平的下游变化,特别是H3K27的三甲基化,以及围产期神经发生向胶质发生命运转变的后续转变。这些结果共同表明,染色质结合蛋白(例如HMGB2)可以对围产期神经干/祖细胞的表观遗传学景观产生重大影响。

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