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  2. Regulator gene - Wikipedia

    en.wikipedia.org/wiki/Regulator_gene

    A regulator gene may encode a protein, or it may work at the level of RNA, as in the case of genes encoding microRNAs. An example of a regulator gene is a gene that codes for a repressor protein that inhibits the activity of an operator (a gene which binds repressor proteins thus inhibiting the translation of RNA to protein via RNA polymerase). [1]

  3. Gene regulatory circuit - Wikipedia

    en.wikipedia.org/wiki/Gene_regulatory_circuit

    Genetic regulatory circuits are analogous in many ways to electronic circuits in how they use signal inputs and outputs to determine gene regulation. [4] [5] Like electronic circuits, their organization determines their efficiency, and this has been demonstrated in circuits working in series to have a greater sensitivity of gene regulation.

  4. Biochemical switches in the cell cycle - Wikipedia

    en.wikipedia.org/wiki/Biochemical_switches_in...

    The phosphorylation of Rb by CDK4/6 and CDK2 dissociates the Rb-repressor complex and serves as an on/off switch for the cell cycle. Once Rb is phosphorylated, the inhibition is released on the E2F transcriptional activity. This allows for the transcription of S phase genes encoding for proteins that amplify the G1 to S phase switch.

  5. Cis-regulatory element - Wikipedia

    en.wikipedia.org/wiki/Cis-regulatory_element

    The design of cis-regulatory modules is such that transcription factors and epigenetic modifications serve as inputs, and the output of the module is the command given to the transcription machinery, which in turn determines the rate of gene transcription or whether it is turned on or off. [1]

  6. Synthetic biological circuit - Wikipedia

    en.wikipedia.org/wiki/Synthetic_biological_circuit

    At the moment, circuit design is improving at a slow pace because of insufficient organization of known multiple gene interactions and mathematical models. This issue is being addressed by applying computer-aided design (CAD) software to provide multimedia representations of circuits through images, text and programming language applied to ...

  7. Gene regulatory network - Wikipedia

    en.wikipedia.org/wiki/Gene_regulatory_network

    Structure of a gene regulatory network Control process of a gene regulatory network. A gene (or genetic) regulatory network (GRN) is a collection of molecular regulators that interact with each other and with other substances in the cell to govern the gene expression levels of mRNA and proteins which, in turn, determine the function of the cell.

  8. Tetracycline-controlled transcriptional activation - Wikipedia

    en.wikipedia.org/wiki/Tetracycline-controlled...

    A modified version of T-REx is the Linearizer synthetic biological circuit, optimized for gene expression tuning in eukaryotic (budding yeast, human, etc) cells. By incorporating TetO2 sites into the promoter driving TetR expression, it creates negative feedback , which ensures homogeneous expression (low noise) and a linear dose-response to ...

  9. Evolutionary developmental biology - Wikipedia

    en.wikipedia.org/wiki/Evolutionary_developmental...

    Some of these genes are structural, directly forming enzymes, tissues and organs of the embryo. But many others are themselves regulatory genes, so what is switched on is often a precisely-timed cascade of switching, involving turning on one developmental process after another in the developing embryo. [1]