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胚胎组织分化的特征是细胞周期动态相关核心启动子调控的转变。

Embryonic tissue differentiation is characterized by transitions in cell cycle dynamic-associated core promoter regulation.

机构信息

Institute of Cancer and Genomic Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, B15 2TT, UK.

Institute of Clinical Sciences and MRC Clinical Sciences Centre, Faculty of Medicine, Imperial College London, London, W12 0NN, UK.

出版信息

Nucleic Acids Res. 2020 Sep 4;48(15):8374-8392. doi: 10.1093/nar/gkaa563.

Abstract

The core-promoter, a stretch of DNA surrounding the transcription start site (TSS), is a major integration-point for regulatory-signals controlling gene-transcription. Cellular differentiation is marked by divergence in transcriptional repertoire and cell-cycling behaviour between cells of different fates. The role promoter-associated gene-regulatory-networks play in development-associated transitions in cell-cycle-dynamics is poorly understood. This study demonstrates in a vertebrate embryo, how core-promoter variations define transcriptional output in cells transitioning from a proliferative to cell-lineage specifying phenotype. Assessment of cell proliferation across zebrafish embryo segmentation, using the FUCCI transgenic cell-cycle-phase marker, revealed a spatial and lineage-specific separation in cell-cycling behaviour. To investigate the role differential promoter usage plays in this process, cap-analysis-of-gene-expression (CAGE) was performed on cells segregated by cycling dynamics. This analysis revealed a dramatic increase in tissue-specific gene expression, concurrent with slowed cycling behaviour. We revealed a distinct sharpening in TSS utilization in genes upregulated in slowly cycling, differentiating tissues, associated with enhanced utilization of the TATA-box, in addition to Sp1 binding-sites. In contrast, genes upregulated in rapidly cycling cells carry broad distribution of TSS utilization, coupled with enrichment for the CCAAT-box. These promoter features appear to correspond to cell-cycle-dynamic rather than tissue/cell-lineage origin. Moreover, we observed genes with cell-cycle-dynamic-associated transitioning in TSS distribution and differential utilization of alternative promoters. These results demonstrate the regulatory role of core-promoters in cell-cycle-dependent transcription regulation, during embryo-development.

摘要

核心启动子是一段位于转录起始位点(TSS)周围的 DNA,是调控基因转录的信号的主要整合点。细胞分化的标志是不同命运的细胞之间转录谱和细胞周期行为的分歧。启动子相关基因调控网络在细胞周期动力学与发育相关的转变中所起的作用还知之甚少。本研究在脊椎动物胚胎中证明了,核心启动子的变异如何在从增殖到细胞谱系特化表型的细胞转变中定义转录输出。使用 FUCCI 转基因细胞周期相标志物评估斑马鱼胚胎分节过程中的细胞增殖情况,揭示了细胞周期行为的空间和谱系特异性分离。为了研究差异启动子使用在这个过程中所起的作用,对根据细胞周期动力学分离的细胞进行了帽分析基因表达(CAGE)。该分析显示,组织特异性基因表达急剧增加,同时细胞周期行为减慢。我们发现,在缓慢循环、分化的组织中上调的基因中,TSS 的利用明显变得更加尖锐,这与 TATA 盒的增强利用以及 Sp1 结合位点有关。相比之下,在快速循环细胞中上调的基因具有广泛的 TSS 利用分布,同时富含 CCAAT 盒。这些启动子特征似乎与细胞周期动力学而不是组织/细胞谱系起源相对应。此外,我们观察到具有 TSS 分布和替代启动子差异利用的与细胞周期动态相关的基因。这些结果表明核心启动子在胚胎发育过程中对细胞周期依赖性转录调控起调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/726a/7470974/1fb0ea4d193c/gkaa563fig1.jpg

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