Heat shock: genomic run-on (GRO) analysis
收藏Alliance of Genome Resources2026-08-01 收录
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This SuperSeries is composed of the SubSeries listed below.
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Heat Shock induces premature transcript termination and reconfigures the human transcriptome. Heat Shock induces premature transcript termination and reconfigures the human transcriptome
The Heat Shock response (HSR) is a highly conserved transcriptional program induced by the exposure to a variety of environmental stressors. Following an insult, a small subset of genes, known as the
NIAID Data Ecosystem80
Heat shock-mediated global gene downregulation is achieved by premature transcription termination [TTchem-seq]. Heat shock-mediated global gene downregulation is achieved by premature transcription termination [TTchem-seq]
The Heat Shock response (HSR) is a highly conserved transcriptional program induced by the exposure to a variety of environmental stressors. Following an insult, a small subset of genes, known as the
NIAID Data Ecosystem70
TR heat-shock
Within a GRO experiment, samples for Transcription rate (TR) analysis were taken at 0, 4, 11, 16, 26 and 40 minutes after heat stress (from 25_C to 37_C) and subjected to run-on
Alliance of Genome Resources20
Heat shock-mediated global gene downregulation is achieved by premature transcription termination [DRB_TTchem-seq]
The Heat Shock response (HSR) is a highly conserved transcriptional program induced by the exposure to a variety of environmental stressors. Following an insult, a small subset of genes, known as the
NIAID Data Ecosystem70
A temperature increase induces Atf1/Pcr1-dependent rapid depletion of histone in transcriptionally activated gene bodies in fission yeast
Transcriptional regulation is central to organisms' response and adaptation to environmental changes. However, the coordination of transcriptional machinery with chromatin when rapid transcriptional c
NIAID Data Ecosystem50



