Biblio

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Journal Article
2H-DNP-enhanced 2H–13C solid-state NMR correlation spectroscopy, T. Maly, Andreas, L. B., Smith, A. A., and Griffin, R. G., , Physical Chemistry Chemical Physics, vol. 12, p. 5872, 2010.
Atomic Resolution Structure of Monomorphic Aβ42Amyloid Fibrils, M. T. Colvin, Silvers, R., Ni, Q. Zhe, Can, T. V., Sergeyev, I., Rosay, M., Donovan, K. J., Michael, B., Wall, J., Linse, S., and al., et, , Journal of the American Chemical Society, vol. 138, pp. 9663–9674, 2016.
Atomic structure and hierarchical assembly of a cross-  amyloid fibril, A. W. P. Fitzpatrick, Debelouchina, G. T., Bayro, M. J., Clare, D. K., Caporini, M. A., Bajaj, V. S., Jaroniec, C. P., Wang, L., Ladizhansky, V., Muller, S. A., and al., et, , Proceedings of the National Academy of Sciences, vol. 110, pp. 5468–5473, 2013.
CHHC and 1H–1H magnetization exchange: Analysis by experimental solid-state NMR and 11-spin density-matrix simulations, M. Aluas, Tripon, C., Griffin, J. M., Filip, X., Ladizhansky, V., Griffin, R. G., Brown, S. P., and Filip, C., , Journal of Magnetic Resonance, vol. 199, pp. 173–187, 2009.
Combining DNP NMR with segmental and specific labeling to study a yeast prion protein strain that is not parallel in-register, K. K. Frederick, Michaelis, V. K., Caporini, M. A., Andreas, L. B., Debelouchina, G. T., Griffin, R. G., and Lindquist, S., , Proceedings of the National Academy of Sciences, vol. 114, pp. 3642–3647, 2017.
Cryogenic sample exchange NMR probe for magic angle spinning dynamic nuclear polarization, A. B. Barnes, Mak-Jurkauskas, M. L., Matsuki, Y., Bajaj, V. S., van der Wel, P. C. A., DeRocher, R., Bryant, J., Sirigiri, J. R., Temkin, R. J., Lugtenburg, J., and al., et, , Journal of Magnetic Resonance, vol. 198, pp. 261–270, 2009.
Dynamic nuclear polarization at 700MHz/460GHz, A. B. Barnes, Markhasin, E., Daviso, E., Michaelis, V. K., Nanni, E. A., Jawla, S. K., Mena, E. L., DeRocher, R., Thakkar, A., Woskov, P. P., and al., et, , Journal of Magnetic Resonance, vol. 224, pp. 1–7, 2012.
Dynamic nuclear polarization at high magnetic fields, T. Maly, Debelouchina, G. T., Bajaj, V. S., Hu, K. - N., Joo, C. - G., Mak–Jurkauskas, M. L., Sirigiri, J. R., van der Wel, P. C. A., Herzfeld, J., Temkin, R. J., and al., et, , The Journal of Chemical Physics, vol. 128, p. 052211, 2008.
Dynamic Nuclear Polarization of Deuterated Proteins, Ü. Akbey, W. Franks, T., Linden, A., Lange, S., Griffin, R. G., van Rossum, B. - J., and Oschkinat, H., , Angewandte Chemie International Edition, vol. 49, pp. 7803–7806, 2010.
Dynamic Nuclear Polarization Study of Inhibitor Binding to the M218–60Proton Transporter from Influenza A, L. B. Andreas, Barnes, A. B., Corzilius, B., Chou, J. J., Miller, E. A., Caporini, M. A., Rosay, M., and Griffin, R. G., , Biochemistry, vol. 52, pp. 2774–2782, 2013.
Dynamic Nuclear Polarization with a Rigid Biradical, Y. Matsuki, Maly, T., Ouari, O., Karoui, H., Le Moigne, F., Rizzato, E., Lyubenova, S., Herzfeld, J., Prisner, T., Tordo, P., and al., et, , Angewandte Chemie International Edition, vol. 48, pp. 4996–5000, 2009.
Efficient resonance assignment of proteins in MAS NMR by simultaneous intra- and inter-residue 3D correlation spectroscopy, E. Daviso, Eddy, M. T., Andreas, L. B., Griffin, R. G., and Herzfeld, J., , Journal of Biomolecular NMR, vol. 55, pp. 257–265, 2013.
Expanding the Repertoire of Amyloid Polymorphs by Co-polymerization of Related Protein Precursors, C. J. Sarell, Woods, L. A., Su, Y., Debelouchina, G. T., Ashcroft, A. E., Griffin, R. G., Stockley, P. G., and Radford, S. E., , Journal of Biological Chemistry, vol. 288, pp. 7327–7337, 2013.
Higher Order Amyloid Fibril Structure by MAS NMR and DNP Spectroscopy, G. T. Debelouchina, Bayro, M. J., Fitzpatrick, A. W., Ladizhansky, V., Colvin, M. T., Caporini, M. A., Jaroniec, C. P., Bajaj, V. S., Rosay, M., MacPhee, C. E., and al., et, , Journal of the American Chemical Society, vol. 135, pp. 19237–19247, 2013.
High-Field Dynamic Nuclear Polarization for Solid and Solution Biological NMR, A. B. Barnes, De Paëpe, G., van der Wel, P. C. A., Hu, K. - N., Joo, C. - G., Bajaj, V. S., Mak-Jurkauskas, M. L., Sirigiri, J. R., Herzfeld, J., Temkin, R. J., and al., et, , Applied Magnetic Resonance, vol. 34, pp. 237–263, 2008.
High-resolution solid-state NMR structure of Alanyl-Prolyl-Glycine, A. B. Barnes, Andreas, L. B., Huber, M., Ramachandran, R., van der Wel, P. C. A., Veshtort, M., Griffin, R. G., and Mehta, M. A., , Journal of Magnetic Resonance, vol. 200, pp. 95–100, 2009.
Insight into the Mechanism of Inactivation of Ribonucleotide Reductase by Gemcitabine 5′-Diphosphate in the Presence or Absence of Reductant, E. Artin, Wang, J., Lohman, G. J. S., Yokoyama, K., Yu, G., Griffin, R. G., Bar, G., and Stubbe, J. A., , Biochemistry, vol. 48, pp. 11622–11629, 2009.
Lipid bilayer-bound conformation of an integral membrane beta barrel protein by multidimensional MAS NMR, M. T. Eddy, Su, Y., Silvers, R., Andreas, L., Clark, L., Wagner, G., Pintacuda, G., Emsley, L., and Griffin, R. G., , Journal of Biomolecular NMR, vol. 61, pp. 299–310, 2015.
Magic Angle Spinning NMR Investigation of Influenza A M218−60: Support for an Allosteric Mechanism of Inhibition, L. B. Andreas, Eddy, M. T., Pielak, R. M., Chou, J., and Griffin, R. G., , Journal of the American Chemical Society, vol. 132, pp. 10958–10960, 2010.
Magic Angle Spinning NMR of Proteins: High-Frequency Dynamic Nuclear Polarization and1H Detection, Y. Su, Andreas, L., and Griffin, R. G., , Annual Review of Biochemistry, vol. 84, pp. 465–497, 2015.
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 of the Drug Resistant S31N M2 Proton Transporter from Influenza A, L. B. Andreas, Eddy, M. T., Chou, J. J., and Griffin, R. G., , Journal of the American Chemical Society, vol. 134, pp. 7215–7218, 2012.
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.
Overhauser effects in insulating solids, T. V. Can, Caporini, M. A., Mentink-Vigier, F., Corzilius, B., Walish, J. J., Rosay, M., Maas, W. E., Baldus, M., Vega, S., Swager, T. M., and al., et, , The Journal of Chemical Physics, vol. 141, p. 064202, 2014.

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