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首页> 外文期刊>Journal of Molecular Biology >Transcriptomic Characterization of the Human Cell Cycle in Individual Unsynchronized Cells
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Transcriptomic Characterization of the Human Cell Cycle in Individual Unsynchronized Cells

机译:单个非同步细胞中人细胞周期的转录组特征

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Abstract The highly fine-tuned dynamics of cell cycle gene expression have been intensely studied for several decades. However, some previous observations may be difficult to fully decouple from artifacts induced by traditional cell synchronization procedures. In addition, bulk cell measurements may have disguised intricate details. Here, we address this by sorting and transcriptomic sequencing of single cells progressing through the cell cycle without prior synchronization. Genes and pathways with known cell cycle roles are confirmed, associated regulatory sequence motifs are determined, and we also establish ties between other biological processes and the unsynchronized cell cycle. Importantly, we find the G1 phase to be surprisingly heterogeneous, with transcriptionally distinct early and late time points. We additionally note that mRNAs accumulate to reach maximum total levels at mitosis and find that stable transcripts show reduced cell-to-cell variability, consistent with the transcriptional burst model of gene expression. Our study provides the first detailed transcriptional profiling of an unsynchronized human cell cycle. Graphical abstract Display Omitted Highlights ? An updated view of cell cycle gene expression, without synchronization artifacts ? Transcription factor and miRNA binding motifs associated with cell cycle expression ? Transcriptionally distinct early and late G1 subpopulations in single cells ? Total polyadenylated mRNA levels progressively increase toward mitosis. ? Support for the transcriptional burst model of gene expression
机译:摘要在几十年来看,细胞周期基因表达的高度微调动态得到了强烈的研究。然而,一些先前的观察可能难以完全从传统细胞同步程序所引起的伪影中脱钩。此外,散装电池测量可能具有伪装的复杂细节。在这里,我们通过在没有先前同步的情况下通过细胞周期进行单个单元的分类和转录组测序来解决这一点。确认了具有已知细胞周期作用的基因和途径,确定了相关的调节序列基序,我们还建立在其他生物过程和未同步细胞周期之间的关系。重要的是,我们发现G1阶段令人惊讶的是异质的,并且具有转录的早期和晚期时间点。我们还注意到MRNA积累以达到有丝分裂的最大总水平,并发现稳定的转录物显示出降低的细胞对细胞变异性,与基因表达的转录突发模型一致。我们的研究提供了一个非同步人体细胞周期的第一个详细的转录分析。图形抽象显示省略了亮点?细胞周期基因表达的更新视图,无同步伪像?与细胞周期表达相关的转录因子和miRNA结合基序?在单细胞中转录的早期和晚期G1亚群?总多腺苷酸化的mRNA水平逐渐增加有丝分裂。还是支持基因表达的转录突发模型

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