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TF-Cluster: A pipeline for identifying functionally coordinated transcription factors via network decomposition of the shared coexpression connectivity matrix (SCCM)

机译:TF-Cluster:通过共享共表达连接矩阵(SCCM)的网络分解来识别功能协调的转录因子的管道

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摘要

BackgroundIdentifying the key transcription factors (TFs) controlling a biological process is the first step toward a better understanding of underpinning regulatory mechanisms. However, due to the involvement of a large number of genes and complex interactions in gene regulatory networks, identifying TFs involved in a biological process remains particularly difficult. The challenges include: (1) Most eukaryotic genomes encode thousands of TFs, which are organized in gene families of various sizes and in many cases with poor sequence conservation, making it difficult to recognize TFs for a biological process; (2) Transcription usually involves several hundred genes that generate a combination of intrinsic noise from upstream signaling networks and lead to fluctuations in transcription; (3) A TF can function in different cell types or developmental stages. Currently, the methods available for identifying TFs involved in biological processes are still very scarce, and the development of novel, more powerful methods is desperately needed.
机译:背景识别控制生物过程的关键转录因子(TF)是迈向更好地理解基础调节机制的第一步。然而,由于大量基因的参与以及基因调控网络中复杂的相互作用,鉴定参与生物过程的TF仍然特别困难。面临的挑战包括:(1)大多数真核基因组编码成千上万个TF,这些TF组织在各种大小的基因家族中,并且在许多情况下序列保守性差,难以识别用于生物过程的TF; (2)转录通常涉及数百个基因,这些基因会产生来自上游信号网络的内在噪声的组合,并导致转录波动; (3)TF可以在不同的细胞类型或发育阶段起作用。当前,用于鉴定参与生物过程的TF的方法仍然非常稀少,并且迫切需要开发新颖的,更有效的方法。

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