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Nuclear Resonance Spectroscopy of Engineered Ferritin Samples

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Abstract

Ferritin consists of a protein shell encapsulating an iron biomineral core1. The shell is composed of 24 amino acid chains of two types, H and L2. Mӧssbauer spectroscopy3 based on the recoil-free emission and absorption of nuclear γ-rays in solids can uniquely characterize the structure of the core4. It uses radioactive 57Co that decays into 57Fe at an excited energy state with subsequent emission of a 14.4 KeV γ-ray. The lifetime of the 14.4 KeV excited state is 10-7 s making the γ-ray extremely sharp. Resonant absorption of the γ-ray by the ferritin sample is achieved by using the Döppler Effect. The absorption spectrum reports on the electronic charge density, the iron coordination symmetry and magnetic order in the material. The Mӧssbauer spectra of L-rich and H-rich ferritins reconstituted to 100057Fe/protein in the presence of phosphate were recorded at RT. The spectra were analyzed in terms of the core/shell model of the iron core5. The results show the H-rich cores to be more crystalline than the L-rich, while TEM studies indicate that the L-rich proteins form somewhat larger cores than the H-rich under similar iron reconstitution conditions. These observations can be traced to differences in H- and L-chain molecular structures and their influence on core growth 6,7.

Publication: 1. Pauline M. Harrison, The Structure and Function of Ferritin, Biochemical Education, 1986, 14, 154-162<br>2. Lianbing Zhang and Mato Knez, Spherical nanoscale protein templates for biomedical applications: A review on ferritin, J. of Nanoscience Lett, 2012, 2:6<br>3. Fernande Grandjean and Gary J. Long, Best Practices and Protocols in Mössbauer Spectroscopy, <br>Chem. Mater. 2021, 33, 11, 3878–3904<br>4. Georgia C. Papaefthymiou, The Mössbauer and magnetic properties of ferritin cores, 2010, 886-897<br>5. R.A. Brooks, J. Vymazal, R.B. Goldfarb, J.W. Bulte, P. Aisen, Relaxometry and magnetometry of ferritin, Mag. Res. Med., 1998, 40, 227–235<br>6. S. Levi , P. Santambrogio, A. Cozzi, E. Rovida, B. Corsi, E. Tamborini, S. Spada, A. Albertini, P. Arosio, The role of the L-chain in ferritin iron incorporation. Studies of homo and heteropolymers, J. Mol. Biol., 1994, 238, 649-654<br>7. S. Levi , A. Luzzago, G. Cesareni, A. Cozzi, F. Franceschinelli, A. Albertini, P. Arosio, Mechanism of ferritin iron uptake: activity of the H-chain and deletion mapping of the ferro-oxidase site. A study of iron uptake and ferro-oxidase activity of human liver, recombinant H-chain ferritins, and of two H-chain deletion mutants, J. Biol. Chem., 1988, 263,18086-92

Presenters

  • Alex D Zarta

    Villanova University

Authors

  • Alex D Zarta

    Villanova University