Pigment Cell Biology Group, CSIR-Institute of Genomics and Integrative Biology, Mathura Road, New Delhi, 110025, India.
Academy of Scientific and Innovative Research, Kamla Nehru Nagar, Ghaziabad, Uttar Pradesh, 201002, India.
Development. 2020 Mar 12;147(5):dev182576. doi: 10.1242/dev.182576.
In the neural crest lineage, progressive fate restriction and stem cell assignment are crucial for both development and regeneration. Whereas fate commitment events have distinct transcriptional footprints, fate biasing is often transitory and metastable, and is thought to be moulded by epigenetic programmes. Therefore, the molecular basis of specification is difficult to define. In this study, we established a role for a histone variant, , in specification of the melanocyte lineage from multipotent neural crest cells. silencing reduces the number of melanocyte precursors in developing zebrafish embryos and from mouse embryonic stem cells We demonstrate that this histone variant occupies nucleosomes in the promoter of the key melanocyte determinant , and enhances its induction. CRISPR/Cas9-based targeted mutagenesis of this gene in zebrafish drastically reduces adult melanocytes, as well as their regeneration. Thereby, our study establishes the role of a histone variant upstream of the core gene regulatory network in the neural crest lineage. This epigenetic mark is a key determinant of cell fate and facilitates gene activation by external instructive signals, thereby establishing melanocyte fate identity.
在神经嵴谱系中,渐进式命运限制和干细胞分配对于发育和再生都是至关重要的。虽然命运决定事件具有明显的转录特征,但命运偏向往往是短暂的和亚稳态的,并且被认为是由表观遗传程序塑造的。因此,规范的分子基础很难定义。在这项研究中,我们确定了组蛋白变体 在多能神经嵴细胞向黑素细胞谱系特化中的作用。沉默减少了发育中的斑马鱼胚胎和小鼠胚胎干细胞中黑素细胞前体的数量。我们证明这种组蛋白变体占据关键黑素细胞决定因子 的启动子中的核小体,并增强其诱导。通过 CRISPR/Cas9 对该基因在斑马鱼中的靶向诱变极大地减少了成年黑素细胞及其再生。因此,我们的研究确立了组蛋白变体在神经嵴谱系中核心基因调控网络上游的作用。这种表观遗传标记是细胞命运的关键决定因素,通过外部指令信号促进基因激活,从而建立黑素细胞命运身份。