Disulfide Bonds

Disulfide bonds are covalent links between the sulfur atoms of two cysteine residues that help determine the structure and stability of proteins. They form when cysteine thiol groups undergo oxidation, creating a sulfur-sulfur bond, and can be broken under reducing conditions. In biology, these bonds are especially important in extracellular proteins, where they reinforce three-dimensional structure and support resistance to chemical or physical stress. Their formation influences protein folding, antibody architecture, and the activity of hormones and enzymes, making disulfide-bond analysis valuable in cell biology, disease research, and biopharmaceutical development.

Disulfide Bonds - Related Videos

Research

JoVE EoE - Viral Growth and Techniques

Fluorescent Functionalization of Virus-Like Particles via Disulfide Re-bridging

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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 fluorescent functionalization of virus-like particles by re-bridging reduced disulfides with a polyethylene glycol (PEG) linker, producing stable, trackable conjugates suitable for cellular imaging and targeted delivery in biomedical applications.

Non-Reducing SDS PAGE: A Method to Analyze Disulfide-Linked Multimeric Protein Complexes

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2025

This video describes the technique of separating the protein samples by non-reducing SDS-PAGE to analyze the multimeric protein complexes. This technique retains the multimer subunits of a protein held by the disulfide bonds which can later be analyzed by western blotting.

Making Conjugation-induced Fluorescent PEGylated Virus-like Particles by Dibromomaleimide-disulfide Chemistry

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Cited by 12 •

2018

Here, we present a procedure to fluorescently functionalize the disulfides on Qβ VLP with dibromomaleimide. We describe Qβ expression and purification, the synthesis of dibromomaleimide-functionalized molecules, and the conjugation reaction between dibromomaleimide and Qβ. The resulting yellow fluorescent conjugated particle can be used as a fluorescence probe inside cells.

Education

JoVE Core - Chemistry

Bond Energies and Bond Lengths

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2020

Stable molecules exist because covalent bonds hold the atoms together. The strength of a covalent bond is measured by the energy required to break it, that is, the energy necessary to separate the bonded atoms. Separating any pair of bonded atoms requires energy — the stronger a bond, the greater the energy required to break it. The energy required to break a specific covalent bond in one mole of gaseous molecules is called the bond energy or the bond dissociation energy. The bond energy for a...

Bonding in Metals

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2020

Metallic bonds are formed between two metal atoms. A simplified model to describe metallic bonding has been developed by Paul Drüde called the “Electron Sea Model”. Electron Sea Model Most metal atoms do not possess enough valence electrons to enter into an ionic or covalent bonding. However, the valence electrons in metal atoms are loosely held due to their low electronegativity or attraction with the nucleus. The ionization energy of metal atoms (energy required to remove an electron from...

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