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基因表达状态空间轨迹的分解。

Decomposition of gene expression state space trajectories.

机构信息

Department of Biostatistics, Harvard School of Public Health, Boston, Massachusetts, USA.

出版信息

PLoS Comput Biol. 2009 Dec;5(12):e1000626. doi: 10.1371/journal.pcbi.1000626. Epub 2009 Dec 24.

Abstract

Representing and analyzing complex networks remains a roadblock to creating dynamic network models of biological processes and pathways. The study of cell fate transitions can reveal much about the transcriptional regulatory programs that underlie these phenotypic changes and give rise to the coordinated patterns in expression changes that we observe. The application of gene expression state space trajectories to capture cell fate transitions at the genome-wide level is one approach currently used in the literature. In this paper, we analyze the gene expression dataset of Huang et al. (2005) which follows the differentiation of promyelocytes into neutrophil-like cells in the presence of inducers dimethyl sulfoxide and all-trans retinoic acid. Huang et al. (2005) build on the work of Kauffman (2004) who raised the attractor hypothesis, stating that cells exist in an expression landscape and their expression trajectories converge towards attractive sites in this landscape. We propose an alternative interpretation that explains this convergent behavior by recognizing that there are two types of processes participating in these cell fate transitions-core processes that include the specific differentiation pathways of promyelocytes to neutrophils, and transient processes that capture those pathways and responses specific to the inducer. Using functional enrichment analyses, specific biological examples and an analysis of the trajectories and their core and transient components we provide a validation of our hypothesis using the Huang et al. (2005) dataset.

摘要

将复杂网络表示和分析为生物过程和途径的动态网络模型仍然是一个障碍。对细胞命运转变的研究可以揭示许多关于转录调控程序的信息,这些程序是这些表型变化的基础,并导致我们观察到的表达变化的协调模式。目前在文献中使用基因表达状态空间轨迹来捕获全基因组水平的细胞命运转变是一种方法。在本文中,我们分析了 Huang 等人(2005 年)的基因表达数据集,该数据集跟踪了在诱导剂二甲基亚砜和全反式视黄酸存在下前髓细胞向中性粒细胞样细胞的分化。Huang 等人(2005 年)在 Kauffman(2004 年)的工作基础上进行了研究,后者提出了吸引子假说,指出细胞存在于表达景观中,它们的表达轨迹在这个景观中向吸引子点收敛。我们提出了一个替代解释,通过识别参与这些细胞命运转变的两种类型的过程来解释这种收敛行为-核心过程包括前髓细胞向中性粒细胞的特定分化途径,以及瞬态过程,这些过程捕捉到那些途径和对诱导剂的特定反应。我们使用功能富集分析、具体的生物学实例以及对轨迹及其核心和瞬态成分的分析,使用 Huang 等人(2005 年)的数据集验证了我们的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca60/2791157/b1897608bd82/pcbi.1000626.g001.jpg

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