Libby Ashley R G, Rito Tiago, Radley Arthur, Briscoe James
The Francis Crick Institute, Developmental Dynamics Group, 1 Midland Rd, London, NW1 1AT, UK.
Development. 2025 Feb 1;152(3). doi: 10.1242/dev.204591. Epub 2025 Feb 12.
Tissue development relies on the coordinated differentiation of stem cells in dynamically changing environments. The formation of the vertebrate neural tube from stem cells in the caudal lateral epiblast is a well-characterized example. Despite an understanding of the signalling pathways involved, the gene regulatory mechanisms remain poorly defined. To address this, we developed a multiplexed in vivo CRISPR screening approach in chick embryos targeting genes expressed in the caudal epiblast and neural tube. This revealed a role for MLLT3, a component of the super elongation complex, in the specification of neural fate. Perturbation of MLLT3 disrupted neural tube morphology and reduced neural fate acquisition. Mutant forms of retinoic acid receptor A lacking the MLLT3 binding domain similarly reduced neural fate acquisition. Together, these findings validate an in vivo CRISPR screen strategy in chick embryos and identify a previously unreported role for MLLT3 in caudal neural tissue specification.
组织发育依赖于干细胞在动态变化环境中的协调分化。脊椎动物神经管由尾侧外侧上胚层中的干细胞形成就是一个特征明确的例子。尽管已经了解其中涉及的信号通路,但基因调控机制仍不清楚。为了解决这个问题,我们在鸡胚中开发了一种多重体内CRISPR筛选方法,靶向在尾侧上胚层和神经管中表达的基因。这揭示了超级延伸复合物的一个组成部分MLLT3在神经命运特化中的作用。MLLT3的扰动破坏了神经管形态并减少了神经命运的获得。缺乏MLLT3结合域的视黄酸受体A突变形式同样减少了神经命运的获得。总之,这些发现验证了鸡胚中的一种体内CRISPR筛选策略,并确定了MLLT3在尾侧神经组织特化中以前未报道的作用。