Integrated BioBank of Luxembourg, Dudelange L-3555, Luxembourg.
Luxembourg Centre for Systems Biomedicine (LCSB), University of Luxembourg, 6, avenue du Swing, L-4367 Belvaux, Luxembourg.
Nucleic Acids Res. 2019 Apr 23;47(7):3333-3343. doi: 10.1093/nar/gkz147.
Advances in single-cell RNA-sequencing techniques reveal the existence of distinct cell subpopulations. Identification of transcription factors (TFs) that define the identity of these subpopulations poses a challenge. Here, we postulate that identity depends on background subpopulations, and is determined by a synergistic core combination of TFs mainly uniquely expressed in each subpopulation, but also TFs more broadly expressed across background subpopulations. Building on this view, we develop a new computational method for determining such synergistic identity cores of subpopulations within a given cell population. Our method utilizes an information-theoretic measure for quantifying transcriptional synergy, and implements a novel algorithm for searching for optimal synergistic cores. It requires only single-cell RNA-seq data as input, and does not rely on any prior knowledge of candidate genes or gene regulatory networks. Hence, it can be directly applied to any cellular systems, including those containing novel subpopulations. The method is capable of recapitulating known experimentally validated identity TFs in eight published single-cell RNA-seq datasets. Furthermore, some of these identity TFs are known to trigger cell conversions between subpopulations. Thus, this methodology can help design strategies for cell conversion within a cell population, guiding experimentalists in the field of stem cell research and regenerative medicine.
单细胞 RNA 测序技术的进步揭示了不同细胞亚群的存在。确定定义这些亚群身份的转录因子 (TFs) 是一项挑战。在这里,我们假设身份取决于背景亚群,并由主要在每个亚群中特异性表达的协同核心组合 TFs 以及在背景亚群中广泛表达的 TFs 共同决定。基于这一观点,我们开发了一种新的计算方法,用于确定给定细胞群体中特定亚群的协同身份核心。我们的方法利用了一种信息论度量来量化转录协同作用,并实现了一种用于搜索最优协同核心的新算法。它仅需要单细胞 RNA-seq 数据作为输入,并且不依赖于候选基因或基因调控网络的任何先验知识。因此,它可以直接应用于任何细胞系统,包括那些包含新亚群的系统。该方法能够在八个已发表的单细胞 RNA-seq 数据集重现已知的实验验证的身份 TF。此外,这些身份 TF 中的一些已知会触发亚群之间的细胞转化。因此,这种方法学可以帮助设计细胞群体内的细胞转化策略,为干细胞研究和再生医学领域的实验人员提供指导。