Multi-gene Assembly

Multi-gene assembly is the construction of a single DNA construct containing multiple genetic elements, enabling coordinated expression of several genes in one engineered system. It works by combining DNA fragments in a defined order through methods such as restriction-ligation, Gibson assembly, or modular cloning, while promoters, regulatory sequences, coding regions, and terminators control gene expression. In bioengineering, multi-gene assembly supports metabolic pathway engineering, recombinant protein production, and the design of synthetic gene circuits. By coordinating enzymes or regulatory components, it can improve pathway performance, simplify genetic modification, and enable more predictable engineering of cells and other biological systems.

Multi-gene Assembly - Related Videos

Research

JoVE Journal - Bioengineering

Rapid Assembly of Multi-Gene Constructs using Modular Golden Gate Cloning

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Cited by 11 •

2021

The goal of this protocol is to provide a detailed, step-by-step guide for assembling multi-gene constructs using the modular cloning system based on Golden Gate cloning. It also gives recommendations on critical steps to ensure optimal assembly based on our experiences.

Transient Gene Expression in Tobacco using Gibson Assembly and the Gene Gun

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Cited by 8 •

2014

This work describes a novel method for selectively targeting subcellular organelles in plants, assayed using the BioRad Gene Gun.

Research

JoVE Journal - Immunology and Infection
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Multi-target Parallel Processing Approach for Gene-to-structure Determination of the Influenza Polymerase PB2 Subunit

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Cited by 3 •

2013

Structure-based drug design plays an important role in drug development. Pursuing multiple targets in parallel greatly increases the chance of success for lead discovery. The following article highlights how the Seattle Structural Genomics Center for Infectious Disease utilizes a multi-target approach for gene-to-structure determination of the PB2 influenza A subunit.

Research

JoVE Journal - Biology
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Assembly, Loading, and Alignment of an Analytical Ultracentrifuge Sample Cell

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Cited by 21 •

2009

The analytical ultracentrifuge (AUC) sample cell holds sample and reference buffer and during experiments and is exposed to high vacuum and rotor speeds up to 60,000 rpm. This video will demonstrate the rigorous attention to detail necessary for assembly, loading and alignment of this very important component of an AUC experiment.

Multi-target Chromogenic Whole-mount In Situ Hybridization for Comparing Gene Expression Domains in Drosophila Embryos

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Cited by 9 •

2016

We describe a multi-target chromogenic whole-mount in situ hybridization (MC-WISH) procedure in intact Drosophila embryos allowing simultaneous and specific detection of three different mRNA distribution patterns by contrasting color precipitates.

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