METHODS AND SYSTEMS FOR QUANTIFYING GENE EXPRESSION IN SYNTHETIC GENE CIRCUITS AND FOR TUNING SYNTHETIC GENE CIRUITS

    公开(公告)号:US20190221281A1

    公开(公告)日:2019-07-18

    申请号:US16248720

    申请日:2019-01-15

    CPC classification number: G16B5/00 C12N15/635

    Abstract: A method of tuning the performance of a synthetic gene circuit comprising a plurality of genes is disclosed. The method includes quantifying, for each gene, a relative gene expression metric. The metric is quantified by determining a number of nucleotides in a 5′ adjacent transcriptional region (ATR) of the gene, a number of nucleotides in a 3′ ATR, a minimum free energy of a mRNA secondary structure around a ribosome binding site of the gene, a total folding energy for the 5′ ATR, and a folding energy for the first 100 nucleotides of the 3′ ATR, and then summing sequence-dependent energy changes, the terms including scaling coefficients and an average energy cost for synthesizing a nucleotide. The method further includes simulating, through application of the relative gene expression metrics of the plurality of genes to a deterministic model, the performance of an intended function of the synthetic gene circuit.

    Methods and systems for quantifying gene expression in synthetic gene circuits and for tuning synthetic gene circuits

    公开(公告)号:US11276478B2

    公开(公告)日:2022-03-15

    申请号:US16248720

    申请日:2019-01-15

    Abstract: A method of tuning the performance of a synthetic gene circuit comprising a plurality of genes is disclosed. The method includes quantifying, for each gene, a relative gene expression metric. The metric is quantified by determining a number of nucleotides in a 5′ adjacent transcriptional region (ATR) of the gene, a number of nucleotides in a 3′ ATR, a minimum free energy of a mRNA secondary structure around a ribosome binding site of the gene, a total folding energy for the 5′ ATR, and a folding energy for the first 100 nucleotides of the 3′ ATR, and then summing sequence-dependent energy changes, the terms including scaling coefficients and an average energy cost for synthesizing a nucleotide. The method further includes simulating, through application of the relative gene expression metrics of the plurality of genes to a deterministic model, the performance of an intended function of the synthetic gene circuit.

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