Phage-assisted Evolution

Phage-assisted evolution (PACE) is a directed-evolution method that rapidly improves proteins or genetic systems by linking their activity to the replication of bacteriophage in engineered host cells. In a continuous-flow setup, phage variants encode the gene being evolved, while host cells provide a selection circuit that permits replication only when the target function activates a required gene, such as the infectivity factor gene III. Mutant phage with improved activity reproduce more successfully, whereas less functional variants are washed out, enabling many generations of selection with limited manual intervention. In bioengineering, PACE has been used to optimize enzymes, polymerases, genome-editing components, and other molecular tools with new or improved functions.

Phage-assisted Evolution - Related Videos

Research

JoVE Journal - Bioengineering
Free Sample

A Practical Guide to Phage- and Robotics-Assisted Near-Continuous Evolution

0 Views •

2024

Phage- and Robotics-assisted Near-continuous Evolution (PRANCE) is a technique for rapid, robust protein evolution. Robotics allows the parallelization of experiments, real-time monitoring, and feedback control.

Research

JoVE Journal - Bioengineering

Precise Phage Mutagenesis with NgTET-Assisted CRISPR-Cas Systems

0 Views •

2025

Here, we present a protocol to reduce DNA modifications in bacteriophages using the NgTET enzyme, enabling efficient and scarless CRISPR-Cas mutagenesis. This method facilitates the genetic engineering of phages for applications in biotechnology and phage therapy.

Phage Purification from Borrelia burgdorferi

0 Views •

2026

Source: Eggers, C. H. Phage-Mediated Genetic Manipulation of the Lyme Disease Spirochete Borrelia burgdorferi. J. Vis. Exp. (2022).This video demonstrates the isolation of borrelial phage particles from a Borrelia burgdorferi suspension using polyethylene glycol-mediated phase separation. The sample is centrifuged, treated with a salt solution, and a molecular crowding agent to precipitate phages. Chloroform extraction is done to remove debris and concentrate phage particles. The purified phage...

Atomic Force Microscopy to Visualize Phage–Antigen Interactions

0 Views •

2026

Source: Williams, S. M. et al. Novel Atomic Force Microscopy Based Biopanning for Isolation of Morphology Specific Reagents against TDP-43 Variants in Amyotrophic Lateral Sclerosis. J. Vis. Exp. (2015)This video demonstrates tapping-mode AFM to visualize phage–antigen interactions on a mica surface. It outlines the steps for antigen immobilization, phage binding, and high-resolution nanoscale imaging.

A Phage Therapy against Pseudomonas aeruginosa Infection in Zebrafish Embryos

0 Views •

2025

The video demonstrates the phage therapy technique targeting Pseudomonas aeruginosa infection in cystic fibrosis zebrafish embryos. Phage therapy effectively diminishes bacterial load and mitigates proinflammatory immune responses in CF zebrafish embryos infected with bacteria, leading to reduced CF embryo lethality.

View All Results

FAQs

Related Topics