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小鼠围产期睾丸发育中单细胞染色质可及性图谱。

The single-cell chromatin accessibility landscape in mouse perinatal testis development.

机构信息

Developmental and Regenerative Biology Program, School of Biomedical Sciences, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, Hong Kong, Hong Kong.

School of Medical Technology and Engineering, Fujian Medical University, Fujian, China.

出版信息

Elife. 2023 Apr 25;12:e75624. doi: 10.7554/eLife.75624.

Abstract

Spermatogenesis depends on an orchestrated series of developing events in germ cells and full maturation of the somatic microenvironment. To date, the majority of efforts to study cellular heterogeneity in testis has been focused on single-cell gene expression rather than the chromatin landscape shaping gene expression. To advance our understanding of the regulatory programs underlying testicular cell types, we analyzed single-cell chromatin accessibility profiles in more than 25,000 cells from mouse developing testis. We showed that single-cell sequencing assay for transposase-accessible chromatin (scATAC-Seq) allowed us to deconvolve distinct cell populations and identify -regulatory elements (CREs) underlying cell-type specification. We identified sets of transcription factors associated with cell type-specific accessibility, revealing novel regulators of cell fate specification and maintenance. Pseudotime reconstruction revealed detailed regulatory dynamics coordinating the sequential developmental progressions of germ cells and somatic cells. This high-resolution dataset also unveiled previously unreported subpopulations within both the Sertoli and Leydig cell groups. Further, we defined candidate target cell types and genes of several genome-wide association study (GWAS) signals, including those associated with testosterone levels and coronary artery disease. Collectively, our data provide a blueprint of the 'regulon' of the mouse male germline and supporting somatic cells.

摘要

精子发生依赖于生殖细胞中一系列有序的发育事件和体细胞微环境的完全成熟。迄今为止,大多数研究睾丸细胞异质性的努力都集中在单细胞基因表达上,而不是在染色质景观上塑造基因表达。为了深入了解睾丸细胞类型的调控程序,我们分析了来自发育中老鼠睾丸的超过 25000 个细胞的单细胞染色质可及性图谱。我们表明,转座酶可及染色质的单细胞测序分析(scATAC-Seq)允许我们对不同的细胞群体进行去卷积,并确定细胞类型特化的调控元件(CREs)。我们确定了与细胞类型特异性可及性相关的转录因子集,揭示了细胞命运特化和维持的新调控因子。拟时重建揭示了协调生殖细胞和体细胞顺序发育进展的详细调控动态。这个高分辨率数据集还揭示了 Sertoli 和 Leydig 细胞群内以前未报道的亚群。此外,我们定义了几个全基因组关联研究(GWAS)信号的候选靶细胞类型和基因,包括与睾丸激素水平和冠状动脉疾病相关的信号。总的来说,我们的数据为老鼠雄性生殖系和支持体细胞的“调控网络”提供了蓝图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0db/10174692/86b2045c04b4/elife-75624-fig1.jpg

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