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Runx2 调节染色质可及性以在新生儿期指导成骨细胞程序。

Runx2 regulates chromatin accessibility to direct the osteoblast program at neonatal stages.

机构信息

Laboratory of Clinical Biotechnology, Center for Disease Biology and Integrative Medicine, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655, Japan; Department of Bioengineering, Graduate School of Engineering, The University of Tokyo, Tokyo 113-8655, Japan.

Orthopedic Surgery, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655, Japan.

出版信息

Cell Rep. 2022 Sep 6;40(10):111315. doi: 10.1016/j.celrep.2022.111315.

Abstract

The transcriptional regulator Runx2 (runt-related transcription factor 2) has essential but distinct roles in osteoblasts and chondrocytes in skeletal development. However, Runx2-mediated regulatory mechanisms underlying the distinctive programming of osteoblasts and chondrocytes are not well understood. Here, we perform an integrative analysis to investigate Runx2-DNA binding and chromatin accessibility ex vivo using neonatal osteoblasts and chondrocytes. We find that Runx2 engages with cell-type-distinct chromatin-accessible regions, potentially interacting with different combinations of transcriptional regulators, forming cell-type-specific hotspots, and potentiating chromatin accessibility. Genetic analysis and direct cellular reprogramming studies suggest that Runx2 is essential for establishment of chromatin accessibility in osteoblasts. Functional enhancer studies identify an Sp7 distal enhancer driven by Runx2-dependent binding and osteoblast-specific chromatin accessibility, contributing to normal osteoblast differentiation. Our findings provide a framework for understanding the regulatory landscape encompassing Runx2-mediated and cell-type-distinct enhancer networks that underlie the specification of osteoblasts.

摘要

转录调节因子 Runx2(与 runt 相关的转录因子 2)在骨骼发育过程中的成骨细胞和软骨细胞中具有重要但不同的作用。然而,Runx2 介导的调节机制,其基础是成骨细胞和软骨细胞的独特编程,尚未得到很好的理解。在这里,我们进行了综合分析,使用新生的成骨细胞和软骨细胞在体外研究 Runx2-DNA 结合和染色质可及性。我们发现 Runx2 与细胞类型特异性的染色质可及区域结合,可能与不同的转录调节因子组合相互作用,形成细胞类型特异性的热点,并增强染色质可及性。遗传分析和直接细胞重编程研究表明,Runx2 对于成骨细胞中染色质可及性的建立是必需的。功能增强子研究鉴定了一个由 Runx2 依赖性结合和成骨细胞特异性染色质可及性驱动的 Sp7 远端增强子,有助于正常的成骨细胞分化。我们的研究结果为理解包括 Runx2 介导的和细胞类型特异性增强子网络的调控景观提供了一个框架,这些网络是成骨细胞特异性的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb4c/9510047/ce5f430ed6c7/nihms-1834788-f0002.jpg

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