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Aleš Marek, Břetislav Brož, Michal Kriegelstein, Gabriela Nováková, Jana Hojcsková, Miroslava Blechová, Lenka Žáková, Jiří Jiráček, Lenka Maletínská. Late-stage labeling of diverse peptides and proteins with iodine-125[J]. Journal of Pharmaceutical Analysis. doi: 10.1016/j.jpha.2025.101198
Citation: Aleš Marek, Břetislav Brož, Michal Kriegelstein, Gabriela Nováková, Jana Hojcsková, Miroslava Blechová, Lenka Žáková, Jiří Jiráček, Lenka Maletínská. Late-stage labeling of diverse peptides and proteins with iodine-125[J]. Journal of Pharmaceutical Analysis. doi: 10.1016/j.jpha.2025.101198

Late-stage labeling of diverse peptides and proteins with iodine-125

doi: 10.1016/j.jpha.2025.101198
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Institutional support was provided by project RVO 61388963 (to the Institute of Organic Chemistry and Biochemistry) of the Czech Academy of Sciences. The work of JJ was supported by the project National Institute for Research of Metabolic and Cardiovascular Diseases (Programme EXCELES, project ID LX22NPO5104, funded by the European Union’s Next Generation EU). The work of LZ was supported by the Czech Science Foundation grant 23- 05805S.

  • Received Date: Jun. 25, 2024
  • Rev Recd Date: Dec. 16, 2024
  • Available Online: Jan. 21, 2025
  • The preparation of specifically 125I-labeled peptides of high purity and specific activity represents a key tool for the detailed characterization of their binding properties in interaction with their binding partners. Early synthetic methods for the incorporation of iodine faced challenges such as harsh reaction conditions, the use of strong oxidants and low reproducibility. Herein, we review well-established radiolabeling strategies available to incorporate radionuclide into a protein of interest, and our long-term experience with a mild, simple and generally applicable technique of iodine-125 late-stage-labeling of biomolecules using the Pierce iodination reagent for the direct solid-phase oxidation of radioactive iodide. General recommendations, tips, and details of optimized chromatographic conditions to isolate pure, specifically 125I-mono-labeled biomolecules are illustrated on a diverse series of (poly)peptides, ranging up to 7.6 kDa and 67 amino acids (aa). These series include peptides that contain at least one tyrosine or histidine residue, along with those featuring disulfide crosslinking or lipophilic derivatization. This mild and straightforward late-stage-labeling technique is easily applicable to longer and more sensitive proteins, as demonstrated in the cases of IGF-BP-3 (the insulin-like growth factor binding protein, 29 kDa, 264 aa) and ALS (the acid-labile subunit, 93 kDa, 578 aa).
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