GENOMIC EDITING IN AUTOMATED SYSTEMS
    15.
    发明申请

    公开(公告)号:US20190292568A1

    公开(公告)日:2019-09-26

    申请号:US16358461

    申请日:2019-03-19

    Abstract: The present disclosure thus provides methods for higher efficiency cell editing that maintain the viability of the cells. In certain aspects, the present disclosure provides systems and instruments for automated methods of multiplexed nuclease-directed genome editing using nuclease expression under a constitutive promoter. In specific aspects, the constitutive promoter is an insulated promoter. In other aspects, the constitutive promoter is a heterologous promoter. In still other aspects, the constitutive promoter is a synthetic promoter.

    Methods for increasing observed editing in bacteria

    公开(公告)号:US11319542B2

    公开(公告)日:2022-05-03

    申请号:US17536067

    申请日:2021-11-28

    Abstract: The present disclosure relates to methods for increasing observed editing rates in the surviving bacteria cells. The compositions and methods presented herein in combination lead to a phenomenon of “edit or die.” Although less cells survive plating and editing, a large percentage of cells that do survive are multiple editors. In one experiment it was found that if a cell survives transformation, plating, and editing, 75% of the surviving cells are multiple editors; that is, 75% of the surviving cells were simultaneously edited with edits at two or more different locations within the bacterial genome.

    METHODS FOR INCREASING OBSERVED EDITING IN BACTERIA

    公开(公告)号:US20220081693A1

    公开(公告)日:2022-03-17

    申请号:US17536067

    申请日:2021-11-28

    Abstract: The present disclosure relates to methods for increasing observed editing rates in the surviving bacteria cells. The compositions and methods presented herein in combination lead to a phenomenon of “edit or die.” Although less cells survive plating and editing, a large percentage of cells that do survive are multiple editors. In one experiment it was found that if a cell survives transformation, plating, and editing, 75% of the surviving cells are multiple editors; that is, 75% of the surviving cells were simultaneously edited with edits at two or more different locations within the bacterial genome

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