Abstract Background By studying genome-wide expression patterns in healthy and diseased tissues across a wide range of pathophysiological conditions, DNA microarrays have revealed unique insights into complex diseases. However, the high-dimensionality of microarray data makes interpretation of heterogeneous gene expression studies inherently difficult. Results Using a large-scale analysis of more than 40 microarray studies encompassing ~2400 mammalian tissue samples, we identified a common theme across heterogeneous microarray studies evident by a robust genome-wide inverse regulation of metabolic and cell signaling pathways: We found that upregulation of cell signaling pathways was invariably accompanied by downregulation of cell metabolic...
Abstract Background Cells coordinate their metabolism, proliferation, and cellular communication acc...
Background: The unfolded protein response (UPR) refers to intracellular stress signaling pathways th...
Abstract Background Large-scale quantitative analysis...
Every cell in an individual has largely the same genomic sequence and yet cells in different tissues...
Transcriptional reprogramming of cellular metabolism is a hallmark of cancer. However, systematic ap...
Background Predicting molecular responses in human by extrapolating results from model organisms re...
It has been hypothesized that the net expression of a gene is determined by the combined effects of ...
It has been hypothesized that the net expression of a gene is determined by the combined effects of ...
Transcription is necessary for the synthesis of new proteins, often leading to the assumption that c...
Genome-scale metabolic models (GEMs) are powerful tools for understanding metabolism from a systems-...
Metabolic diseases and comorbidities represent an ever-growing epidemic where multiple cell types im...
How cells sense and respond to environmental cues remains a central question of biological research....
Abstract Background Contrary to the traditional biology approach, where the expression patterns of a...
The investigation of metabolic regulation at the transcriptional level presents different challenges...
Cellular systems shift metabolic states by adjusting gene expression and enzyme activities to adapt ...
Abstract Background Cells coordinate their metabolism, proliferation, and cellular communication acc...
Background: The unfolded protein response (UPR) refers to intracellular stress signaling pathways th...
Abstract Background Large-scale quantitative analysis...
Every cell in an individual has largely the same genomic sequence and yet cells in different tissues...
Transcriptional reprogramming of cellular metabolism is a hallmark of cancer. However, systematic ap...
Background Predicting molecular responses in human by extrapolating results from model organisms re...
It has been hypothesized that the net expression of a gene is determined by the combined effects of ...
It has been hypothesized that the net expression of a gene is determined by the combined effects of ...
Transcription is necessary for the synthesis of new proteins, often leading to the assumption that c...
Genome-scale metabolic models (GEMs) are powerful tools for understanding metabolism from a systems-...
Metabolic diseases and comorbidities represent an ever-growing epidemic where multiple cell types im...
How cells sense and respond to environmental cues remains a central question of biological research....
Abstract Background Contrary to the traditional biology approach, where the expression patterns of a...
The investigation of metabolic regulation at the transcriptional level presents different challenges...
Cellular systems shift metabolic states by adjusting gene expression and enzyme activities to adapt ...
Abstract Background Cells coordinate their metabolism, proliferation, and cellular communication acc...
Background: The unfolded protein response (UPR) refers to intracellular stress signaling pathways th...
Abstract Background Large-scale quantitative analysis...