Biblio

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Structure of the Nucleotide Radical Formed during Reaction of CDP/TTP with the E441Q-α2β2 ofE. coliRibonucleotide Reductase, H. Zipse, Artin, E., Wnuk, S., Lohman, G. J. S., Martino, D., Griffin, R. G., Kacprzak, S., Kaupp, M., Hoffman, B., Bennati, M., and al., et, , Journal of the American Chemical Society, vol. 131, pp. 200–211, 2009.
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.
Structural Characterization of GNNQQNY Amyloid Fibrils by Magic Angle Spinning NMR, P. C. A. van der Wel, Lewandowski, J. R., and Griffin, R. G., , Biochemistry, vol. 49, pp. 9457–9469, 2010.
Structural Characterization of Cardiac Ex Vivo Transthyretin Amyloid: Insight into the Transthyretin Misfolding Pathway In Vivo, A. K. R. Dasari, Hung, I., Michael, B., Gan, Z., Kelly, J. W., Connors, L. H., Griffin, R. G., and Lim, K. Hun, , Biochemistry, vol. 59, pp. 1800–1803, 2020.
Spin dynamics in the modulation frame: Application to homonuclear recoupling in magic angle spinning solid-state NMR, G. De Paëpe, Lewandowski, J. R., and Griffin, R. G., , The Journal of Chemical Physics, vol. 128, p. 124503, 2008.
Sensitivity-Enhanced NMR Reveals Alterations in Protein Structure by Cellular Milieus, K.  K. Frederick, Michaelis, V. K., Corzilius, B., Ong, T. - C., Jacavone, A.  C., Griffin, R. G., and Lindquist, S., , Cell, vol. 163, pp. 620–628, 2015.

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