Lipid Nanodiscs

Lipid nanodiscs are nanoscale, discoidal patches of lipid bilayer stabilized by surrounding scaffold molecules, providing a soluble, controlled model of a biological membrane. They work by enclosing phospholipids and often membrane proteins within a bilayer whose composition and size can be tuned during assembly. This design preserves key protein–lipid interactions while reducing the complexity of whole-cell membranes, enabling measurements with purified components. In biology, lipid nanodiscs support structural studies, spectroscopy, ligand-binding assays, and investigations of membrane protein folding, transport, and signaling. By linking controllable membrane environments with biochemical and biophysical analysis, they help clarify membrane-associated function and aid therapeutic and biosensor development.

Lipid Nanodiscs - Related Videos

Research

JoVE Journal - Biology

A Step-by-step Method for the Reconstitution of an ABC Transporter into Nanodisc Lipid Particles

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Cited by 23 •

2012

Nanodiscs are small discoid particles that incorporate membrane proteins into a small patch of phospholipid bilayer. We provide a visual protocol that shows the step-by-step incorporation of the MalFGK2 transporter into a disc.

Synthesis of Nanodisc-Stabilized Membrane Protein Antigens Using a Cell-Free System

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2025

Source: Gilmore, S. F., et al. Cell-Free Scaled Production and Adjuvant Addition to a Recombinant Major Outer Membrane Protein from Chlamydia muridarum for Vaccine Development. J. Vis. Exp. (2022)This video demonstrates the cell-free synthesis of nanodisc-stabilized membrane protein antigens using a dual-compartment system. The device maintains optimal conditions for efficient protein synthesis, proper folding, and stable integration into nanodiscs.

A Technique for Stabilizing Membrane Proteins in Nanodiscs

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2026

This study outlines the procedure for reconstituting the membrane protein TWIK-related acid-sensitive K+ channel 2 (Task2) into nanodiscs. The successful assembly was confirmed by single-particle cryo-electron microscopy, which yielded well-defined two-dimensional class averages.

Co-Translational Insertion of Membrane Proteins into Preformed Nanodiscs

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Cited by 5 •

2020

Co-translational insertion into pre-formed nanodiscs makes it possible to study cell-free synthesized membrane proteins in defined lipid environments without contact with detergents. This protocol describes the preparation of essential system components and the critical parameters for improving expression efficiency and sample quality.

Education

JoVE Core - Chemistry

Structure of Lipids

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2020

Lipids include a diverse group of compounds that are largely nonpolar in nature. This is because they are hydrocarbons that include mostly nonpolar carbon-carbon or carbon-hydrogen bonds. Non-polar molecules are hydrophobic (“water fearing”), or insoluble in water. Lipids perform many different functions in a cell. Cells store energy for long-term use in the form of fats. Lipids also provide insulation from the environment for plants and animals. For example, they help keep aquatic birds and...

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