E. Coli

E. coli is a Gram-negative, rod-shaped bacterium found commonly in the intestines of humans and other animals, where it contributes to microbial ecology while serving as a major model organism in biology. It reproduces through binary fission, and particular strains cause disease by using specialized adhesins, toxins, and secretion systems to colonize tissues and disrupt host cells. In research, E. coli supports studies of gene regulation, cellular metabolism, mutation, and bacterial physiology, and its well-characterized genetics make it valuable for recombinant DNA, protein production, and biotechnology. Distinguishing harmless from pathogenic strains also helps researchers investigate foodborne illness, antibiotic resistance, and host-microbe interactions.

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Measuring E. coli Bacterial Load in Drosophila melanogaster following E. coli Infection

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2025

In this video, we demonstrate a technique for measuring the E. coli bacterial load after injecting E. coli into the thorax of Drosophila melanogaster.

Preparation of E. coli Spheroplasts

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2025

Source: Figueroa, D. M., et.al. Production and Visualization of Bacterial Spheroplasts and Protoplasts to Characterize Antimicrobial Peptide Localization. J. Vis. Exp. (2018)This video demonstrates the production of Escherichia coli spheroplasts by first inhibiting cell division to induce filamentation, followed by enzymatic digestion of the cell wall. The process includes controlled addition of a chelating agent, DNase, and an osmotic stabilizer to ensure proper spheroplast formation and...

The Multifaceted Benefits of Protein Co-expression in Escherichia coli

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Cited by 4 •

2015

Protein co-expression is a powerful alternative to the reconstitution in vitro of protein complexes, and is of help in performing biochemical and genetic tests in vivo. Here we report on the use of protein co-expression in Escherichia coli to obtain protein complexes, and to tune the mutation frequency of cells.

Production of Virus-like Particles in Engineered E. coli

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2026

Source: Chen, Z., et al. Making Conjugation-induced Fluorescent PEGylated Virus-like Particles by Dibromomaleimide-disulfide Chemistry. J. Vis. Exp. (2018)This video demonstrates the method for the controlled expression of the bacteriophage Qβ coat protein in engineered E. coli. The resulting proteins self-assemble into virus-like particles, which are harvested for downstream bioconjugation.

Transformation of Plasmid DNA into E. coli Using the Heat Shock Method

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Cited by 433 •

2007

Transformation of plasmid DNA into E. coli using the heat shock method is a basic technique of molecular biology. It consists of inserting a foreign ...

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