Systematic exploration of dynamic splicing networks reveals conserved multistage regulators of neurogenesis

动态剪接网络的系统探索揭示了神经发生的保守多阶段调节器

阅读:8
作者:Hong Han, Andrew J Best, Ulrich Braunschweig, Nicholas Mikolajewicz, Jack Daiyang Li, Jonathan Roth, Fuad Chowdhury, Federica Mantica, Syed Nabeel-Shah, Guillermo Parada, Kevin R Brown, Dave O'Hanlon, Jiarun Wei, Yuxi Yao, Abdelrahman Abou Zid, Lim Caden Comsa, Mark Jen, Jenny Wang, Alessandro Datti

Abstract

Alternative splicing (AS) is a critical regulatory layer; yet, factors controlling functionally coordinated splicing programs during developmental transitions are poorly understood. Here, we employ a screening strategy to identify factors controlling dynamic splicing events important for mammalian neurogenesis. Among previously unknown regulators, Rbm38 acts widely to negatively control neural AS, in part through interactions mediated by the established repressor of splicing, Ptbp1. Puf60, a ubiquitous factor, is surprisingly found to promote neural splicing patterns. This activity requires a conserved, neural-differential exon that remodels Puf60 co-factor interactions. Ablation of this exon rewires distinct AS networks in embryonic stem cells and at different stages of mouse neurogenesis. Single-cell transcriptome analyses further reveal distinct roles for Rbm38 and Puf60 isoforms in establishing neuronal identity. Our results describe important roles for previously unknown regulators of neurogenesis and establish how an alternative exon in a widely expressed splicing factor orchestrates temporal control over cell differentiation.

特别声明

1、本页面内容包含部分的内容是基于公开信息的合理引用;引用内容仅为补充信息,不代表本站立场。

2、若认为本页面引用内容涉及侵权,请及时与本站联系,我们将第一时间处理。

3、其他媒体/个人如需使用本页面原创内容,需注明“来源:[生知库]”并获得授权;使用引用内容的,需自行联系原作者获得许可。

4、投稿及合作请联系:info@biocloudy.com。