Grouping genes by similarity of expression across multiple cellular conditions enables the identification of cellular modules. The known functions of genes enable the characterization of the aggregate biological functions of these modules. In this paper, we use a high-throughput approach to identify the effective mutual regulatory interactions between modules composed of mouse genes from the Alliance for Cell Signaling (AfCS) murine B-lymphocyte database which tracks the response of ?15,000 genes following chemokine perturbation. This analysis reveals principles of cellular organization that we discuss along four conceptual axes. (1) Regulatory implications: the derived collection of influences between any two modules quantifies intuitive a...
The genotype and the environment significantly influence the behavior and phenotype of an organism. ...
[[abstract]]Background With the accumulation of increasing omics data, a key goal of systems biology...
Transcriptional control is a key regulatory mechanism for cells to direct their destinies. A large n...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
SummaryThe combinatorial cross-regulation of hundreds of sequence-specific transcription factors (TF...
Gene expression is a tightly controlled process in all cells and at all stages of life. Expressing ...
It is increasingly becoming clear in the post-genomic era that proteins in a cell do not work in iso...
In this thesis, I, alongside my varied and talented collaborators, aim to integrate two seemingly di...
SummaryChromatin interactions play important roles in transcription regulation. To better understand...
Precise regulation of the cell cycle is crucial to the growth and development of all organisms. Unde...
Gene regulatory networks account for the ability of the genome to program development in complex mul...
AbstractIntegrative systems biology has emerged as an exciting research approach in molecular biolog...
Biomolecular pathways are built from diverse types of pairwise interactions, ranging from physical p...
<p><b>Background:</b> Uncovering the operating principles underlying cellular processes by using 'om...
Life within an organism is sustained by biomolecular interactions. Mapping networks of interactions ...
The genotype and the environment significantly influence the behavior and phenotype of an organism. ...
[[abstract]]Background With the accumulation of increasing omics data, a key goal of systems biology...
Transcriptional control is a key regulatory mechanism for cells to direct their destinies. A large n...
Living cells are the product of gene expression programs involving regulated transcription of thousa...
SummaryThe combinatorial cross-regulation of hundreds of sequence-specific transcription factors (TF...
Gene expression is a tightly controlled process in all cells and at all stages of life. Expressing ...
It is increasingly becoming clear in the post-genomic era that proteins in a cell do not work in iso...
In this thesis, I, alongside my varied and talented collaborators, aim to integrate two seemingly di...
SummaryChromatin interactions play important roles in transcription regulation. To better understand...
Precise regulation of the cell cycle is crucial to the growth and development of all organisms. Unde...
Gene regulatory networks account for the ability of the genome to program development in complex mul...
AbstractIntegrative systems biology has emerged as an exciting research approach in molecular biolog...
Biomolecular pathways are built from diverse types of pairwise interactions, ranging from physical p...
<p><b>Background:</b> Uncovering the operating principles underlying cellular processes by using 'om...
Life within an organism is sustained by biomolecular interactions. Mapping networks of interactions ...
The genotype and the environment significantly influence the behavior and phenotype of an organism. ...
[[abstract]]Background With the accumulation of increasing omics data, a key goal of systems biology...
Transcriptional control is a key regulatory mechanism for cells to direct their destinies. A large n...