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The activity of genes is controlled by proteins called transcription factors that are, themselves, the products of genes.
The question of how access to the genes is controlled is still mysterious, but it must involve the versatile packaging material that clads the DNA, known as chromatin because it takes up colored stains.
Transcription of heat-shock protein genes is controlled by regulatory proteins called heat stress transcription factors (Hsfs).
The expression of most known B. pertussis virulence genes is controlled by the two-component system BvgA/S.
The parent-specific monoallelic expression of imprinted genes is controlled by DNA methylation marks that are established differentially in the germline.
The inducible expression of these genes is controlled by the HIF-1α.
Monoallelic expression of imprinted genes is controlled by differential methylation at imprinting control regions, (ICRs).
Transcription of protein-encoding genes is controlled by two types of DNA elements, enhancer and core promoter.
Expression of these genes is controlled by E2F1, a transcription factor which stimulates cell cycle progression at G1 to S phase [28].
The transcription of these genes is controlled by the activity of the pleiotropic regulatory protein CodY, which is effected by the intracellular concentrations of BCAAs [19].
Expression of the cupA genes is controlled by the HNS-like protein MvaT, whereas the cupB and cupC genes are under the control of the RocS1A1R two-component system.
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CEO of Professional Science Editing for Scientists @ prosciediting.com