Biblio

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The structure of a β2-microglobulin fibril suggests a molecular basis for its amyloid polymorphism, M. G. Iadanza, Silvers, R., Boardman, J., Smith, H. I., Karamanos, T. K., Debelouchina, G. T., Su, Y., Griffin, R. G., Ranson, N. A., and Radford, S. E., , Nature Communications, vol. 9, 2018.
The structure of a β2-microglobulin fibril suggests a molecular basis for its amyloid polymorphism, M. G. Iadanza, Silvers, R., Boardman, J., Smith, H. I., Karamanos, T. K., Debelouchina, G. T., Su, Y., Griffin, R. G., Ranson, N. A., and Radford, S. E., , Nature Communications, vol. 9, 2018.
Structure and Mechanism of the Influenza A M218–60Dimer of Dimers, L. B. Andreas, Reese, M., Eddy, M. T., Gelev, V., Ni, Q. Zhe, Miller, E. A., Emsley, L., Pintacuda, G., Chou, J. J., and Griffin, R. G., , Journal of the American Chemical Society, vol. 137, pp. 14877–14886, 2015.
Structural Complexity of a Composite Amyloid Fibril, J. R. Lewandowski, van der Wel, P. C. A., Rigney, M., Grigorieff, N., and Griffin, R. G., , Journal of the American Chemical Society, vol. 133, pp. 14686–14698, 2011.
Solid-state dynamic nuclear polarization at 263 GHz: spectrometer design and experimental results, M. Rosay, Tometich, L., Pawsey, S., Bader, R., Schauwecker, R., Blank, M., Borchard, P. M., Cauffman, S. R., Felch, K. L., Weber, R. T., and al., et, , Physical Chemistry Chemical Physics, vol. 12, p. 5850, 2010.
Sn-Beta zeolites with borate salts catalyse the epimerization of carbohydrates via an intramolecular carbon shift, W. R. Gunther, Wang, Y., Ji, Y., Michaelis, V. K., Hunt, S. T., Griffin, R. G., and Román-Leshkov, Y., , Nature Communications, vol. 3, p. 1109, 2012.
Secondary Structure in the Core of Amyloid Fibrils Formed from Human β2m and its Truncated Variant ΔN6, Y. Su, Sarell, C. J., Eddy, M. T., Debelouchina, G. T., Andreas, L. B., Pashley, C. L., Radford, S. E., and Griffin, R. G., , Journal of the American Chemical Society, vol. 136, pp. 6313–6325, 2014.
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Modular, triple–resonance, transmission line DNP MAS probe for 500 MHz/330 GHz, M. Reese, George, C., Yang, C., Jawala, S., J. Grün, T., Schwalbe, H., Redfield, C., Temkin, R. J., and Griffin, R. G., , p. 106573, 2019.
Modular, triple–resonance, transmission line DNP MAS probe for 500 MHz/330 GHz, M. Reese, George, C., Yang, C., Jawala, S., J. Grün, T., Schwalbe, H., Redfield, C., Temkin, R. J., and Griffin, R. G., , p. 106573, 2019.
Methane to Acetic Acid over Cu-Exchanged Zeolites: Mechanistic Insights from a Site-Specific Carbonylation Reaction, K. Narsimhan, Michaelis, V. K., Mathies, G., Gunther, W. R., Griffin, R. G., and Román-Leshkov, Y., , Journal of the American Chemical Society, vol. 137, pp. 1825–1832, 2015.
Metal-free class Ie ribonucleotide reductase from pathogens initiates catalysis with a tyrosine-derived dihydroxyphenylalanine radical, E. J. Blaesi, Palowitch, G. M., Hu, K., Kim, A. J., Rose, H. R., Alapati, R., Lougee, M. G., Kim, H. Jong, Taguchi, A. T., Tan, K. Ooi, Laremore, T. N., Griffin, R. G., Krebs, C., Matthes, M. L., Silakov, A., J. Jr., M. Bollinger, Allen, B. D., and Boal, A. K., , Proceedings of the National Academy of Sciences, vol. 115, pp. 10022–10027, 2018.
Magic Angle Spinning Nuclear Magnetic Resonance Characterization of Voltage-Dependent Anion Channel Gating in Two-Dimensional Lipid Crystalline Bilayers, M. T. Eddy, Andreas, L., Teijido, O., Su, Y., Clark, L., Noskov, S. Y., Wagner, G., Rostovtseva, T. K., and Griffin, R. G., , Biochemistry, vol. 54, pp. 994–1005, 2015.
Magic Angle Spinning NMR Analysis of β2-Microglobulin Amyloid Fibrils in Two Distinct Morphologies, G. T. Debelouchina, Platt, G. W., Bayro, M. J., Radford, S. E., and Griffin, R. G., , Journal of the American Chemical Society, vol. 132, pp. 10414–10423, 2010.

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