Synthetic Gene Networks

Synthetic gene networks are engineered systems that coordinate gene expression to produce defined cellular behaviors, making them important tools in bioengineering and synthetic biology. They typically combine promoters, transcription factors, regulatory RNAs, and feedback loops so cells can detect molecular signals, process information through logic-like interactions, and activate or repress target genes under specified conditions. By modeling and assembling these regulatory circuits, researchers can create programmable responses such as oscillation, pattern formation, biosensing, or controlled protein production. Synthetic gene networks support the design of engineered microbes and mammalian cells for research, therapeutic development, biomanufacturing, and studies of cellular decision-making.

Synthetic Gene Networks - Related Videos

Research

JoVE Journal - Bioengineering

Generation of Shear Adhesion Map Using SynVivo Synthetic Microvascular Networks

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Cited by 10 •

2014

Flow chambers used in adhesion experiments typically consist of linear flow paths and require multiple experiments at different flow rates to generate a shear adhesion map. SynVivo-SMN enables the generation of shear adhesion map using a single experiment utilizing microliter volumes resulting in significant savings in time and consumables.

Mapping Bacterial Functional Networks and Pathways in Escherichia Coli using Synthetic Genetic Arrays

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Cited by 9 •

2012

Systematic, large-scale synthetic genetic (gene-gene or epistasis) interaction screens can be used to explore genetic redundancy and pathway cross-talk. Here, we describe a high-throughput quantitative synthetic genetic array screening technology, termed eSGA that we developed for elucidating epistatic relationships and exploring genetic interaction networks in Escherichia coli.

Education

JoVE Science Education - Engineering

Synthetic Biology

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2023

This video presents synthetic biology and its role in bioengineering. Synthetic biology refers to the methods used to genetically modify organisms in order to make them capable of producing large quantities of a product. This product could be a protein that the cell already makes or a new protein that has been encoded in a newly-inserted DNA sequence. Here, we discuss how an organism's genetic material is modified using transformation or transfection. Then, the process is shown in the...

Engineering and Evolution of Synthetic Adeno-Associated Virus (AAV) Gene Therapy Vectors via DNA Family Shuffling

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Cited by 35 •

2012

We demonstrate the basic technique to molecularly engineer and evolve synthetic Adeno-associated viral (AAV) gene therapy vectors via DNA family shuffling. Moreover, we provide general guidelines and representative examples for selection and analysis of individual chimeric capsids with enhanced properties on target cells in culture or in mice.

Engineering Adherent Bacteria by Creating a Single Synthetic Curli Operon

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Cited by 4 •

2012

The design of a synthetic operon encoding both the secretory apparatus and the structural monomers of curli fibers is described. Overproduction of these amyloids and adherent polymers allows a measurable gain of adherence of the E. coli chassis1. Easy ways to visualize and quantify adherence are explained.

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