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基因对表达特征揭示了谱系控制。

Gene-pair expression signatures reveal lineage control.

机构信息

Life Sciences Research Unit, University of Luxembourg, Luxembourg, Luxembourg.

出版信息

Nat Methods. 2013 Jun;10(6):577-83. doi: 10.1038/nmeth.2445. Epub 2013 Apr 21.

Abstract

The distinct cell types of multicellular organisms arise owing to constraints imposed by gene regulatory networks on the collective change of gene expression across the genome, creating self-stabilizing expression states, or attractors. We curated human expression data comprising 166 cell types and 2,602 transcription-regulating genes and developed a data-driven method for identifying putative determinants of cell fate built around the concept of expression reversal of gene pairs, such as those participating in toggle-switch circuits. This approach allows us to organize the cell types into their ontogenic lineage relationships. Our method identifies genes in regulatory circuits that control neuronal fate, pluripotency and blood cell differentiation, and it may be useful for prioritizing candidate factors for direct conversion of cell fate.

摘要

多细胞生物中不同的细胞类型是由于基因调控网络对整个基因组中基因表达的集体变化施加的限制而产生的,从而创造了自我稳定的表达状态或吸引子。我们整理了包含 166 种细胞类型和 2602 个转录调节基因的人类表达数据,并开发了一种数据驱动的方法,用于识别细胞命运的潜在决定因素,其核心概念是基因对的表达逆转,例如那些参与切换开关电路的基因对。这种方法使我们能够将细胞类型组织成它们的发生谱系关系。我们的方法识别了调控神经元命运、多能性和血细胞分化的调控回路中的基因,它可能有助于确定候选因子,以便直接转换细胞命运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a153/4131748/0a0fe747dd0c/nihms462187f1.jpg

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