State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, 100101, Beijing, China.
Institute for Stem Cell and Regeneration, Chinese Academy of Sciences, 100101, Beijing, China.
Cell Death Differ. 2023 Aug;30(8):1943-1956. doi: 10.1038/s41418-023-01189-y. Epub 2023 Jul 11.
The ability of neural stem/progenitor cells (NSPCs) to proliferate and differentiate is required through different stages of neurogenesis. Disturbance in the regulation of neurogenesis causes many neurological diseases, such as intellectual disability, autism, and schizophrenia. However, the intrinsic mechanisms of this regulation in neurogenesis remain poorly understood. Here, we report that Ash2l (Absent, small or homeotic discs-like 2), one core component of a multimeric histone methyltransferase complex, is essential for NSPC fate determination during postnatal neurogenesis. Deletion of Ash2l in NSPCs impairs their capacity for proliferation and differentiation, leading to simplified dendritic arbors in adult-born hippocampal neurons and deficits in cognitive abilities. RNA sequencing data reveal that Ash2l primarily regulates cell fate specification and neuron commitment. Furthermore, we identified Onecut2, a major downstream target of ASH2L characterized by bivalent histone modifications, and demonstrated that constitutive expression of Onecut2 restores defective proliferation and differentiation of NSPCs in adult Ash2l-deficient mice. Importantly, we identified that Onecut2 modulates TGF-β signaling in NSPCs and that treatment with a TGF-β inhibitor rectifies the phenotype of Ash2l-deficient NSPCs. Collectively, our findings reveal the ASH2L-Onecut2-TGF-β signaling axis that mediates postnatal neurogenesis to maintain proper forebrain function.
神经干细胞/祖细胞 (NSPCs) 的增殖和分化能力是神经发生的不同阶段所必需的。神经发生调节的紊乱会导致许多神经疾病,如智力障碍、自闭症和精神分裂症。然而,这种神经发生调节的内在机制仍知之甚少。在这里,我们报告说,Ash2l(Absent,small or homeotic discs-like 2),一种多聚体组蛋白甲基转移酶复合物的核心组成部分,是出生后神经发生过程中 NSPC 命运决定所必需的。NSPC 中 Ash2l 的缺失会损害其增殖和分化能力,导致成年海马神经元中树突棘的简化和认知能力的缺陷。RNA 测序数据显示,Ash2l 主要调节细胞命运特化和神经元的决定。此外,我们鉴定出 Onecut2,它是 Ash2l 的主要下游靶标,特征是具有双重组蛋白修饰,并证明组成型表达 Onecut2 可恢复成年 Ash2l 缺陷型小鼠中 NSPC 增殖和分化的缺陷。重要的是,我们发现 Onecut2 在 NSPCs 中调节 TGF-β 信号通路,并且 TGF-β 抑制剂的治疗可纠正 Ash2l 缺陷型 NSPCs 的表型。总之,我们的研究结果揭示了 ASH2L-Onecut2-TGF-β 信号轴,它介导了出生后的神经发生,以维持大脑前叶的正常功能。