Beijing Institute of Basic Medical Sciences, 27 Taiping Road, Haidian District, Beijing, 100850, China.
Faculty of Environmental and Life Sciences, Beijing University of Technology, Beijing, 100124, China.
Cell Death Dis. 2024 Feb 12;15(2):129. doi: 10.1038/s41419-024-06530-y.
Neural stem cells (NSCs) are critical for brain development and maintenance of neurogenesis. However, the molecular mechanisms that regulate NSC proliferation and differentiation remain unclear. Mysm1 is a deubiquitinase and is essential for the self-renewal and differentiation of several stem cells. It is unknown whether Mysm1 plays an important role in NSCs. Here, we found that Mysm1 was expressed in NSCs and its expression was increased with age in mice. Mice with Mysm1 knockdown by crossing Mysm1 floxed mice with Nestin-Cre mice exhibited abnormal brain development with microcephaly. Mysm1 deletion promoted NSC proliferation and apoptosis, resulting in depletion of the stem cell pool. In addition, Mysm1-deficient NSCs skewed toward neurogenesis instead of astrogliogenesis. Mechanistic investigations with RNA sequencing and genome-wide CUT&Tag analysis revealed that Mysm1 epigenetically regulated Id4 transcription by regulating histone modification at the promoter region. After rescuing the expression of Id4, the hyperproliferation and imbalance differentiation of Mysm1-deficient NSCs was reversed. Additionally, knockdown Mysm1 in aged mice could promote NSC proliferation. Collectively, the present study identified a new factor Mysm1 which is essential for NSC homeostasis and Mysm1-Id4 axis may be an ideal target for proper NSC proliferation and differentiation.
神经干细胞(NSCs)对于大脑发育和神经发生的维持至关重要。然而,调节 NSCs 增殖和分化的分子机制仍不清楚。Mysm1 是一种去泛素化酶,对于几种干细胞的自我更新和分化是必不可少的。目前尚不清楚 Mysm1 是否在 NSCs 中发挥重要作用。在这里,我们发现 Mysm1 在 NSCs 中表达,并在小鼠中随年龄增长而增加。通过将 Mysm1 floxed 小鼠与 Nestin-Cre 小鼠杂交,敲低 Mysm1 的小鼠表现出异常的大脑发育和小头畸形。Mysm1 缺失促进了 NSCs 的增殖和凋亡,导致干细胞池耗竭。此外,Mysm1 缺陷的 NSCs 向神经发生而不是向星形胶质细胞发生倾斜。通过 RNA 测序和全基因组 CUT&Tag 分析的机制研究表明,Mysm1 通过调节启动子区域的组蛋白修饰来表观遗传调控 Id4 转录。在挽救了 Id4 的表达后,Mysm1 缺陷的 NSCs 的过度增殖和不平衡分化得到了逆转。此外,在老年小鼠中敲低 Mysm1 可以促进 NSCs 的增殖。总之,本研究鉴定了一个新的因子 Mysm1,它对于 NSCs 的稳态是必不可少的,而 Mysm1-Id4 轴可能是适当的 NSCs 增殖和分化的理想靶点。