Hydrolysis and Peptide-Bond Cleavage
Hydrolysis uses water to cleave a chemical bond. Peptide bonds are relatively stable under many conditions, but certain sequences and environments increase susceptibility.
Influencing factors
- pH
- temperature
- neighboring residues
- terminal chemistry
- metal ions
- water activity
- conformation
Acid- and base-catalyzed pathways
Extreme pH can accelerate cleavage and side-chain reactions. Even moderate pH may promote sequence-specific degradation over long storage periods.
Side-chain hydrolysis
Ester, lactam, or other hydrolyzable modifications may degrade faster than the peptide backbone.
Analytical detection
Hydrolysis products may appear as lower-mass fragments or new chromatographic peaks.
Frequently asked questions
Does refrigeration stop hydrolysis?
No. It may slow reaction rates.
Can dry peptides hydrolyze?
Yes, when residual moisture and molecular mobility are sufficient.
Is every cleavage enzymatic?
No. Chemical hydrolysis can occur without enzymes.
Can intact mass detect hydrolysis?
Often, but fragment assignment may require LC-MS or mapping.
Key takeaways
Hydrolysis is controlled by sequence, formulation, water, pH, and temperature. Stability-indicating methods should detect relevant cleavage products.
References
- ICH Q1A(R2). Stability Testing of New Drug Substances and Products.
- ICH Q1B. Photostability Testing of New Drug Substances and Products.
TSMS Labs educational disclaimer: For laboratory research and educational purposes only. Not for human consumption. This content is not medical, clinical, or regulatory advice.