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Regulatory circuit design and evolution using phage lambda.
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Role of the lytic repressor in prophage induction of phage lambda as analyzed by a module-replacement approach.
Proc Natl Acad Sci U S A. 2006 Mar 21;103(12):4558-63. doi: 10.1073/pnas.0511117103. Epub 2006 Mar 14.
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Bacteriophage λ RexA and RexB functions assist the transition from lysogeny to lytic growth.
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Elements in the λ immunity region regulate phage development: beyond the 'Genetic Switch'.
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Positive autoregulation of cI is a dispensable feature of the phage lambda gene regulatory circuitry.
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Noncanonical amino acids as prophage inducers for protein regulation in bacteria-based delivery systems.
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Genome diversity of domesticated ATCC 19606 strains.
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Refactoring the λ phage lytic/lysogenic decision with a synthetic regulator.
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Transcription-factor-mediated DNA looping probed by high-resolution, single-molecule imaging in live E. coli cells.
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Role of cis-acting sites in stimulation of the phage λ P(RM) promoter by CI-mediated looping.
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Decision making in living cells: lessons from a simple system.
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Sequence tolerance of the phage lambda PRM promoter: implications for evolution of gene regulatory circuitry.
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Cooperativity in long-range gene regulation by the lambda CI repressor.
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Directed evolution of a genetic circuit.
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Combinatorial synthesis of genetic networks.
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Systems biology: a brief overview.
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