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Article

Development of Cobalt-Binding Peptide Chelate from Human Serum Albumin: Cobalt-Binding Properties and Stability

1
Department of Chemistry, Chonnam National University, Gwangju 61186, Korea
2
School of Agriculture and Food Science, University College Dublin, Belfield, D04 V1W8 Dublin, Ireland
3
Accelerator Radioisotope Development Laboratory, Korea Atomic Energy Research Institute, Jeongeup-si 56212, Jeollabuk-do, Korea
4
Department of Cosmetic Science, Kwangju Women’s University, Gwangju 62396, Korea
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2022, 23(2), 719; https://doi.org/10.3390/ijms23020719
Submission received: 23 November 2021 / Revised: 4 January 2022 / Accepted: 7 January 2022 / Published: 10 January 2022

Abstract

Radioactive isotopes are used as drugs or contrast agents in the medical field after being conjugated with chelates such as DOTA, NOTA, DTPA, TETA, CyDTA, TRITA, and DPDP. The N-terminal sequence of human serum albumin (HSA) is known as a metal binding site, such as for Co2+, Cu2+, and Ni2+. For this study, we designed and synthesized wAlb12 peptide from the N-terminal region of HSA, which can bind to cobalt, to develop a peptide-based chelate. The wAlb12 with a random coil structure tightly binds to the Co(II) ion. Moreover, the binding property of wAlb12 toward Co(II) was confirmed using various spectroscopic experiments. To identify the binding site of wAlb12, the analogs were synthesized by alanine scanning mutagenesis. Among them, H3A and Ac-wAlb12 did not bind to Co(II). The analysis of the binding regions confirmed that the His3 and α-amino group of the N-terminal region are important for Co(II) binding. The wAlb12 bound to Co(II) with Kd of 75 μM determined by isothermal titration calorimetry when analyzed by a single-site binding model. For the use of wAlb12 as a chelate in humans, its cytotoxicity and stability were investigated. Trypsin stability showed that the wAlb12 − Co(II) complex was more stable than wAlb12 alone. Furthermore, the cell viability analysis showed wAlb12 and wAlb12 + Co(II) to be non-toxic to the Raw 264.7 and HEK 293T cell lines. Therefore, a hot radioactive isotope such as cobalt-57 will have the same effect as a stable isotope cobalt. Accordingly, we expect wAlb12 to be used as a peptide chelate that binds with radioactive isotopes.
Keywords: peptides; cobalt binding; structure; stability peptides; cobalt binding; structure; stability

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MDPI and ACS Style

Cho, Y.; Mirzapour-Kouhdasht, A.; Yun, H.; Park, J.H.; Min, H.J.; Lee, C.W. Development of Cobalt-Binding Peptide Chelate from Human Serum Albumin: Cobalt-Binding Properties and Stability. Int. J. Mol. Sci. 2022, 23, 719. https://doi.org/10.3390/ijms23020719

AMA Style

Cho Y, Mirzapour-Kouhdasht A, Yun H, Park JH, Min HJ, Lee CW. Development of Cobalt-Binding Peptide Chelate from Human Serum Albumin: Cobalt-Binding Properties and Stability. International Journal of Molecular Sciences. 2022; 23(2):719. https://doi.org/10.3390/ijms23020719

Chicago/Turabian Style

Cho, Yeonje, Armin Mirzapour-Kouhdasht, Hyosuk Yun, Jeong Hoon Park, Hye Jung Min, and Chul Won Lee. 2022. "Development of Cobalt-Binding Peptide Chelate from Human Serum Albumin: Cobalt-Binding Properties and Stability" International Journal of Molecular Sciences 23, no. 2: 719. https://doi.org/10.3390/ijms23020719

APA Style

Cho, Y., Mirzapour-Kouhdasht, A., Yun, H., Park, J. H., Min, H. J., & Lee, C. W. (2022). Development of Cobalt-Binding Peptide Chelate from Human Serum Albumin: Cobalt-Binding Properties and Stability. International Journal of Molecular Sciences, 23(2), 719. https://doi.org/10.3390/ijms23020719

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