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Cell-Free Synthetic Biology Platform for Engineering Synthetic Biological Circuits and Systems


Recent advances in plasmid-based tools for establishing novel microbial chassis.

Synthetic Circuits sentence examples within Making Synthetic Circuits



Designing Distributed Cell Classifier Circuits Using a Genetic Algorithm


Designing Distributed Cell Classifier Circuits using a Genetic Algorithm

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Cooperativity in synthetic gene circuits


Complex signal processing in synthetic gene circuits using cooperative regulatory assemblies


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Allele-specific single-cell RNA sequencing reveals different architectures of intrinsic and extrinsic gene expression noises


Allele-specific single-cell RNA sequencing reveals different architectures of intrinsic and extrinsic gene expression noises


Improvement in the Orthogonal Protein Degradation in Escherichia coli by Truncated mf-ssrA Tag



Computation of stationary distributions in stochastic models of cellular processes with molecular memory



Bio-molecular Circuit Design with Electronic Circuit Software and Cytomorphic Chips



Origin of the synthetic circuits and comparison effects of different dose malachite green oxalate doped hydrogel



Multistable and dynamic CRISPRi-based synthetic circuits



Digitalizing heterologous gene expression in Gram‐negative bacteria with a portable ON/OFF module



Organism engineering for the bioproduction of the triaminotrinitrobenzene (TATB) precursor phloroglucinol (PG).



Information content analysis reveals desirable aspects of in vivo experiments of a synthetic circuit



Expanding the Toolbox of Broad Host-Range Transcriptional Terminators for Proteobacteria through Metagenomics.



Resolution metabolomes activated by hypoxic environment



Split-TALE: A TALE-Based Two-Component System for Synthetic Biology Applications in Planta1[OPEN]



Synthetic Bistability and Differentiation in Yeast.



Digitalizing heterologous gene expression in Gram-negative bacteria with a portable on/off module



Physical decoupling of XylS/Pm regulatory elements and conditional proteolysis enable precise control of gene expression in Pseudomonas putida



Modular and tunable biological feedback control using a de novo protein switch



Design of a programmable biosensor-CRISPRi genetic circuits for dynamic and autonomous dual-control of metabolic flux in Bacillus subtilis



Modulating Fis and IHF binding specificity, crosstalk and regulatory logic through the engineering of complex promoters



Programmable CRISPR-Cas Repression, Activation, and Computation with Sequence-Independent Targets and Triggers.



Engineering gene overlaps to sustain genetic constructs in vivo



Synthetic Switches and Regulatory Circuits in Plants1[OPEN]


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Synthetic Circuits 합성 회로


Synthetic Circuits 합성 회로
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