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多层次综合分析揭示了外放射状胶质细胞中的胆固醇代谢程序,这对人类大脑进化具有重要意义。

A multi-layered integrative analysis reveals a cholesterol metabolic program in outer radial glia with implications for human brain evolution.

机构信息

Department of General Linguistics, University of Barcelona, 08007 Barcelona, Spain.

University of Barcelona Institute of Complex Systems, 08007 Barcelona, Spain.

出版信息

Development. 2024 Aug 15;151(16). doi: 10.1242/dev.202390. Epub 2024 Aug 27.

Abstract

The definition of molecular and cellular mechanisms contributing to brain ontogenetic trajectories is essential to investigate the evolution of our species. Yet their functional dissection at an appropriate level of granularity remains challenging. Capitalizing on recent efforts that have extensively profiled neural stem cells from the developing human cortex, we develop an integrative computational framework to perform trajectory inference and gene regulatory network reconstruction, (pseudo)time-informed non-negative matrix factorization for learning the dynamics of gene expression programs, and paleogenomic analysis for a higher-resolution mapping of derived regulatory variants in our species in comparison with our closest relatives. We provide evidence for cell type-specific regulation of gene expression programs during indirect neurogenesis. In particular, our analysis uncovers a key role for a cholesterol program in outer radial glia, regulated by zinc-finger transcription factor KLF6. A cartography of the regulatory landscape impacted by Homo sapiens-derived variants reveals signals of selection clustering around regulatory regions associated with GLI3, a well-known regulator of radial glial cell cycle, and impacting KLF6 regulation. Our study contributes to the evidence of significant changes in metabolic pathways in recent human brain evolution.

摘要

研究我们物种的进化,对导致大脑个体发生轨迹的分子和细胞机制的定义至关重要。然而,在适当的粒度水平上对其进行功能剖析仍然具有挑战性。我们利用最近从人类发育中的大脑皮层中广泛描绘神经干细胞的努力,开发了一种集成的计算框架,用于进行轨迹推断和基因调控网络重建、(伪)时间感知非负矩阵分解以学习基因表达程序的动态,以及古基因组分析,以在我们的物种与最亲近的亲属相比,更精细地映射衍生的调控变体。我们提供了证据表明,在间接神经发生过程中,基因表达程序存在细胞类型特异性调控。特别是,我们的分析揭示了胆固醇程序在外侧放射状胶质细胞中的关键作用,该程序受锌指转录因子 KLF6 调控。受智人衍生变体影响的调控景观图谱揭示了与 GLI3 相关的调控区域周围存在选择聚类的信号,GLI3 是径向胶质细胞周期的已知调节剂,并影响 KLF6 的调控。我们的研究有助于证明代谢途径在人类大脑进化过程中的显著变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9550/11385646/4d514b17a619/develop-151-202390-g1.jpg

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