Related Experiment Video
Updated: Jun 27, 2025

Homogeneous Time-resolved Förster Resonance Energy Transfer-based Assay for Detection of Insulin Secretion
Published on: May 10, 2018
4S-fluorination of ProB29 in insulin lispro slows fibril formation
Stephanie L Breunig1, Alex M Chapman1, Jeanne LeBon2
1Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California, USA.
Abstract:
Recombinant insulin is a life-saving therapeutic for millions of patients affected by diabetes mellitus. Standard mutagenesis has led to insulin variants with improved control of blood glucose; for instance, the fast-acting insulin lispro contains two point mutations that suppress dimer formation and expedite absorption. However, insulins undergo irreversible denaturation, a process accelerated for the insulin monomer. Here we replace ProB29 of insulin lispro with 4R-fluoroproline, 4S-fluoroproline, and 4,4-difluoroproline. All three fluorinated lispro variants reduce blood glucose in diabetic mice, exhibit similar secondary structure as measured by CD, and rapidly dissociate from the zinc- and resorcinol-bound hexamer upon dilution. Notably, however, we find that 4S-fluorination of ProB29 delays the formation of undesired insulin fibrils that can accumulate at the injection site in vivo and can complicate insulin production and storage. These results demonstrate how subtle molecular changes achieved through non-canonical amino acid mutagenesis can improve the stability of protein therapeutics.
Related Concept Videos
Insulin: Biosynthesis, Chemistry, and Preparation
Damage or functional impairment of β-cells inhibits insulin production, leading to diabetes. Diabetes treatment...
Dipeptidyl Peptidase 4 Inhibitors
Protein and Protein Structure
A protein's shape is critical to its function. For example, an enzyme...
Insulin Formulations: Types and Delivery
Short-acting insulins are divided into...
Insulin Secretory Vesicles
Oral Hypoglycemic Agents: Glinides

