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.
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.
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.
Structural Insights into Bound Water in Crystalline Amino Acids: Experimental and Theoretical17O NMR, V. K. Michaelis, Keeler, E. G., Ong, T. - C., Craigen, K. N., Penzel, S., Wren, J. E. C., Kroeker, S., and Griffin, R. G., , The Journal of Physical Chemistry B, vol. 119, pp. 8024–8036, 2015.
Structural Insights into Bound Water in Crystalline Amino Acids: Experimental and Theoretical17O NMR, V. K. Michaelis, Keeler, E. G., Ong, T. - C., Craigen, K. N., Penzel, S., Wren, J. E. C., Kroeker, S., and Griffin, R. G., , The Journal of Physical Chemistry B, vol. 119, pp. 8024–8036, 2015.
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.
Star PolyMOCs with Diverse Structures, Dynamics, and Functions by Three-Component Assembly, Y. Wang, Gu, Y., Keeler, E. G., Park, J. V., Griffin, R. G., and Johnson, J. A., , Angewandte Chemie, vol. 129, pp. 194–198, 2016.
M
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.
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.
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.

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