Computational Systems Biology Unit, Children's Medical Research Institute, University of Sydney, Westmead, NSW 2145, Australia; Embryology Unit, Children's Medical Research Institute, University of Sydney, Westmead, NSW 2145, Australia; School of Medical Sciences, Faculty of Medicine and Health, University of Sydney, Sydney, NSW 2006, Australia.
Stem Cell and Organoid Facility, Children's Medical Research Institute, University of Sydney, Westmead, NSW 2145, Australia.
Cell Rep. 2024 May 28;43(5):114219. doi: 10.1016/j.celrep.2024.114219. Epub 2024 May 14.
Defining the molecular networks orchestrating human brain formation is crucial for understanding neurodevelopment and neurological disorders. Challenges in acquiring early brain tissue have incentivized the use of three-dimensional human pluripotent stem cell (hPSC)-derived neural organoids to recapitulate neurodevelopment. To elucidate the molecular programs that drive this highly dynamic process, here, we generate a comprehensive trans-omic map of the phosphoproteome, proteome, and transcriptome of the exit of pluripotency and neural differentiation toward human cerebral organoids (hCOs). These data reveal key phospho-signaling events and their convergence on transcriptional factors to regulate hCO formation. Comparative analysis with developing human and mouse embryos demonstrates the fidelity of our hCOs in modeling embryonic brain development. Finally, we demonstrate that biochemical modulation of AKT signaling can control hCO differentiation. Together, our data provide a comprehensive resource to study molecular controls in human embryonic brain development and provide a guide for the future development of hCO differentiation protocols.
定义调控人类大脑形成的分子网络对于理解神经发育和神经紊乱至关重要。获取早期脑组织的挑战促使人们使用三维人类多能干细胞(hPSC)衍生的神经类器官来重现神经发育。为了阐明驱动这一高度动态过程的分子程序,在这里,我们生成了一个全面的跨组学图谱,包括人多能干细胞退出多能性并向人脑类器官(hCO)分化过程中的磷酸化组、蛋白质组和转录组。这些数据揭示了关键的磷酸化信号事件及其在转录因子上的收敛,以调节 hCO 的形成。与发育中的人类和小鼠胚胎的比较分析表明,我们的 hCO 在模拟胚胎大脑发育方面具有很高的保真度。最后,我们证明 AKT 信号的生化调节可以控制 hCO 的分化。总之,我们的数据提供了一个全面的资源来研究人类胚胎大脑发育中的分子控制,并为未来 hCO 分化方案的发展提供了指导。