Motivation: Cells receive a wide variety of environmental signals, which are often processed combinatorially to generate specific genetic responses. Changes in transcript levels, as observed across different environmental conditions, can, to a large extent, be attributed to changes in the activity of transcription factors (TFs). However, in unraveling these transcription regulation networks, the actual environmental signals are often not incorporated into the model, simply because they have not been measured. The unquantified heterogeneity of the environmental parameters across microarray experiments frustrates regulatory network inference. Results: We propose an inference algorithm that models the influence of environmental parameters on g...
Yeast cells live in a constantly changing environment that requires the continuous adaptation of the...
Gene expression in eukaryotic cells is controlled by the concerted action of various transcription f...
[[abstract]]For living organisms like Saccharomyces cerevisiae, instinctual response to sudden envir...
Motivation: Cells receive a wide variety of environmental signals, which are often processed combina...
OA Fund TU delft Background: Microorganisms adapt their transcriptome by integrating multiple chemic...
Exactly how an organism adapts its transcriptional program in response to intra- and extracellular s...
Abstract Background Regulatory networks often employ the model that attributes changes in gene expre...
Plant responses to environmental and intrinsic signals are tightly controlled by multiple transcript...
Combinatorial effects of environmental parameters on transcriptional regulation in Saccharomyces cer...
Motivation: Inferring the relationships between transcription factors (TFs) and their targets has ut...
In genetic circuits, the constituent genes do not interact only between themselves, they are also af...
[[abstract]]Motivation: Genome-wide gene expression programs have been monitored and analyzed in the...
In the past decade, technologies such as the DNA microarray and ChIP-on-chip have generated a large ...
Abstract Background Functional genomics studies are yielding information about regulatory processes ...
Motivation Quantitative estimation of the regulatory relationship be-tween transcription factors and...
Yeast cells live in a constantly changing environment that requires the continuous adaptation of the...
Gene expression in eukaryotic cells is controlled by the concerted action of various transcription f...
[[abstract]]For living organisms like Saccharomyces cerevisiae, instinctual response to sudden envir...
Motivation: Cells receive a wide variety of environmental signals, which are often processed combina...
OA Fund TU delft Background: Microorganisms adapt their transcriptome by integrating multiple chemic...
Exactly how an organism adapts its transcriptional program in response to intra- and extracellular s...
Abstract Background Regulatory networks often employ the model that attributes changes in gene expre...
Plant responses to environmental and intrinsic signals are tightly controlled by multiple transcript...
Combinatorial effects of environmental parameters on transcriptional regulation in Saccharomyces cer...
Motivation: Inferring the relationships between transcription factors (TFs) and their targets has ut...
In genetic circuits, the constituent genes do not interact only between themselves, they are also af...
[[abstract]]Motivation: Genome-wide gene expression programs have been monitored and analyzed in the...
In the past decade, technologies such as the DNA microarray and ChIP-on-chip have generated a large ...
Abstract Background Functional genomics studies are yielding information about regulatory processes ...
Motivation Quantitative estimation of the regulatory relationship be-tween transcription factors and...
Yeast cells live in a constantly changing environment that requires the continuous adaptation of the...
Gene expression in eukaryotic cells is controlled by the concerted action of various transcription f...
[[abstract]]For living organisms like Saccharomyces cerevisiae, instinctual response to sudden envir...