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  2. Riboswitch - Wikipedia

    en.wikipedia.org/wiki/Riboswitch

    Riboswitch-controlled formation of rho-independent transcription termination hairpins leads to premature transcription termination. Riboswitch-mediated folding sequesters the ribosome-binding site, thereby inhibiting translation. The riboswitch is a ribozyme that cleaves itself in the presence of sufficient concentrations of its metabolite.

  3. TPP riboswitch - Wikipedia

    en.wikipedia.org/wiki/TPP_riboswitch

    The TPP riboswitch, also known as the THI element and Thi-box riboswitch, is a highly conserved RNA secondary structure. It serves as a riboswitch [1][2] that binds thiamine pyrophosphate (TPP) directly and modulates gene expression through a variety of mechanisms in archaea, bacteria and eukaryotes. [3][4][5] TPP is the active form of thiamine ...

  4. Glycine riboswitch - Wikipedia

    en.wikipedia.org/wiki/Glycine_riboswitch

    Glycine riboswitch. The bacterial glycine riboswitch is an RNA element that can bind the amino acid glycine. Glycine riboswitches usually consist of two metabolite-binding aptamer domains with similar structures in tandem. The aptamers were originally thought to cooperatively bind glycine to regulate the expression of downstream genes.

  5. Protein biosynthesis - Wikipedia

    en.wikipedia.org/wiki/Protein_biosynthesis

    The polypeptide chain then folds and is post-translationally modified. Protein biosynthesis (or protein synthesis) is a core biological process, occurring inside cells, balancing the loss of cellular proteins (via degradation or export) through the production of new proteins. Proteins perform a number of critical functions as enzymes ...

  6. Ribozyme - Wikipedia

    en.wikipedia.org/wiki/Ribozyme

    Ribozyme. 3D structure of a hammerhead ribozyme. Ribozymes (ribo nucleic acid en zyme s) are RNA molecules that have the ability to catalyze specific biochemical reactions, including RNA splicing in gene expression, similar to the action of protein enzymes. The 1982 discovery of ribozymes demonstrated that RNA can be both genetic material (like ...

  7. T-box leader - Wikipedia

    en.wikipedia.org/wiki/T-box_leader

    The riboswitch functions by directly sensing a physiological signal. [10] Next, a specific uncharged tRNA binds to a riboswitch element in the transcript, and a structural change occurs in the transcript that promotes expression of the downstream coding sequence. [2] [10] The specifier sequence is the first recognition sequence in the leader. [7]

  8. Attenuator (genetics) - Wikipedia

    en.wikipedia.org/wiki/Attenuator_(genetics)

    Attenuator (genetics) In genetics, attenuation is a regulatory mechanism for some bacterial operons that results in premature termination of transcription. The canonical example of attenuation used in many introductory genetics textbooks, [ 1 ] is ribosome-mediated attenuation of the trp operon. Ribosome-mediated attenuation of the trp operon ...

  9. Operon - Wikipedia

    en.wikipedia.org/wiki/Operon

    The lac operon of the model bacterium Escherichia coli was the first operon to be discovered and provides a typical example of operon function. It consists of three adjacent structural genes, a promoter, a terminator, and an operator. The lac operon is regulated by several factors including the availability of glucose and lactose.