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调控人类软骨细胞发育的谱系特异性差异和调控网络。

Lineage-specific differences and regulatory networks governing human chondrocyte development.

机构信息

Human Evolutionary Biology, Harvard University, Cambridge, United States.

Department of Orthopedic Research, Boston Children's Hospital, Boston, United States.

出版信息

Elife. 2023 Mar 15;12:e79925. doi: 10.7554/eLife.79925.

Abstract

To address large gaps in our understanding of the molecular regulation of articular and growth plate cartilage development in humans, we used our directed differentiation approach to generate these distinct cartilage tissues from human embryonic stem cells. The resulting transcriptomic profiles of hESC-derived articular and growth plate chondrocytes were similar to fetal epiphyseal and growth plate chondrocytes, with respect to genes both known and previously unknown to cartilage biology. With the goal to characterize the regulatory landscapes accompanying these respective transcriptomes, we mapped chromatin accessibility in hESC-derived chondrocyte lineages, and mouse embryonic chondrocytes, using ATAC-sequencing. Integration of the expression dataset with the differentially accessible genomic regions revealed lineage-specific gene regulatory networks. We validated functional interactions of two transcription factors (TFs) (RUNX2 in growth plate chondrocytes and RELA in articular chondrocytes) with their predicted genomic targets. The maps we provide thus represent a framework for probing regulatory interactions governing chondrocyte differentiation. This work constitutes a substantial step towards comprehensive and comparative molecular characterizations of distinct chondrogenic lineages and sheds new light on human cartilage development and biology.

摘要

为了解决我们对人类关节和生长板软骨发育的分子调控理解上的巨大差距,我们使用我们的定向分化方法,从人类胚胎干细胞中生成这些不同的软骨组织。由此产生的 hESC 来源的关节和生长板软骨细胞的转录组图谱与胎儿骺软骨和生长板软骨细胞相似,涉及到已知和以前未知的软骨生物学基因。为了描述伴随这些相应转录组的调控景观,我们使用 ATAC-seq 对 hESC 来源的软骨细胞谱系和小鼠胚胎软骨细胞中的染色质可及性进行了作图。将表达数据集与差异可及的基因组区域进行整合,揭示了谱系特异性的基因调控网络。我们验证了两个转录因子(RUNX2 在生长板软骨细胞和 RELA 在关节软骨细胞中)与其预测的基因组靶标之间的功能相互作用。我们提供的图谱代表了一个用于探测调控相互作用的框架,这些相互作用控制着软骨细胞的分化。这项工作是朝着全面和比较性地对不同的软骨生成谱系进行分子特征描述迈出的重要一步,为人类软骨发育和生物学提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f270/10069868/62a8be1c45e2/elife-79925-fig1.jpg

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