Mycobacterial Electroporation

Mycobacterial electroporation is a laboratory technique that introduces DNA into mycobacterial cells, enabling genetic manipulation of organisms with unusually resilient cell envelopes. A brief, high-voltage electrical pulse transiently disrupts the plasma membrane, creating pores through which plasmid DNA or other genetic material can enter; cells then recover under conditions that support membrane repair and are selected for successful transformation. The method supports the construction of mutants, complementation strains, and reporter strains for studying gene function, virulence, metabolism, and antibiotic resistance. By expanding the tools available for otherwise difficult-to-transform bacteria, mycobacterial electroporation advances research in microbiology, infectious disease, and antimicrobial development.

Mycobacterial Electroporation - Related Videos

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JoVE Journal - Biology
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Electroporation of Mycobacteria

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Cited by 55 •

2008

Mycobacterial pathogenic strategies remain poorly understood. The slow growth rate of most species, the impenetrable nature of the cell-wall, and the hazards of working with pathogens make mycobacteria difficult to study and are largely responsible for our poor understanding of these organisms. In this video we will demonstrate the technique of electroporation, which involves subjecting cells to a brief high electrical impulse to allow the entry of DNA. It is the most widely used method for...

Research

JoVE Journal - Immunology and Infection

Mycobacterial DNA Extraction using Bead Beating in Custom Buffer Followed by NGS Workflow

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2025

This protocol shows bead-beating combined with DNA capture bead purification provides a fast and consistent method for extracting DNA from Mycobacterium tuberculosis samples, making it an effective choice for next-generation sequencing applications.

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JoVE Science Education - Advanced Biology

Murine In Utero Electroporation

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2023

In utero electroporation is an important technique for studying the molecular mechanisms that guide the proliferation, differentiation, migration, and maturation of cells during neural development. Electroporation enables the rapid and targeted delivery of material into cells by utilizing electrical pulses to create transient pores in cell membranes. Although electroporation has traditionally been used in in vitro studies, scientific advancements have now broadened its utilization to intact...

Bacterial Transformation: Electroporation

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2023

The term “transformation” refers cellular ingestion of foreign DNA. In nature, transformation can occur in certain types of bacteria. In molecular biology, however, transformation is artificially induced through the creation of pores in the bacterial cell walls. Bacterial cells that are able to take up DNA from the environment are called competent cells. Electrocompetent cells can be produced in the laboratory and transformation of these cells can be achieve via the application of an...

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JoVE Journal - Biology
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Electroporation of Craniofacial Mesenchyme

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2011

Craniofacial cartilages develop in close contact with other tissues and are difficult to manipulate in live animals. We are using electroporation to deliver molecular tools during growth of the craniofacial skeleton while bypassing early embryonic effects. This approach will allow us to efficiently test candidate molecules in vivo.

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