Harry C. Rogers
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View article: Transcriptional responses to chronic oxidative stress require cholinergic activation of G-protein-coupled receptor signaling
Transcriptional responses to chronic oxidative stress require cholinergic activation of G-protein-coupled receptor signaling Open
Organisms have evolved protective strategies that are geared toward limiting cellular damage and enhancing organismal survival in the face of environmental stresses, but how these protective mechanisms are coordinated remains unclear. Here…
View article: Transcriptional responses to chronic oxidative stress require cholinergic activation of G-protein-coupled receptor signaling
Transcriptional responses to chronic oxidative stress require cholinergic activation of G-protein-coupled receptor signaling Open
Organisms have evolved protective strategies that are geared toward limiting cellular damage and enhancing organismal survival in the face of environmental stresses, but how these protective mechanisms are coordinated remains unclear. Here…
View article: Transcriptional responses to chronic oxidative stress require cholinergic activation of G-protein-coupled receptor signaling
Transcriptional responses to chronic oxidative stress require cholinergic activation of G-protein-coupled receptor signaling Open
Organisms have evolved protective strategies that are geared toward limiting cellular damage and enhancing organismal survival in the face of environmental stresses, but how these protective mechanisms are coordinated remains unclear. Here…
View article: <i>E. coli</i>transcription factors regulate promoter activity by a universal, homeostatic mechanism
<i>E. coli</i>transcription factors regulate promoter activity by a universal, homeostatic mechanism Open
Transcription factors (TFs) may activate or repress gene expression through an interplay of different mechanisms, including RNA polymerase (RNAP) recruitment, exclusion, and initiation. TFs often have drastically different regulatory behav…