Biblio

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Journal Article
A Chemically Competent Thiosulfuranyl Radical on theEscherichia coliClass III Ribonucleotide Reductase, Y. Wei, Mathies, G., Yokoyama, K., Chen, J., Griffin, R. G., and Stubbe, J. A., , Journal of the American Chemical Society, vol. 136, pp. 9001–9013, 2014.
Conformation of bis-nitroxide polarizing agents by multi-frequency EPR spectroscopy, J. Soetbeer, Gast, P., Walish, J. J., Zhao, Y., George, C., Yang, C., Swager, T. M., Griffin, R. G., and Mathies, G., , Physical Chemistry Chemical Physics, vol. 20, pp. 25506–25517, 2018.
Equilibration of Tyrosyl Radicals (Y356•, Y731•, Y730•) in the Radical Propagation Pathway of the Escherichia coli Class Ia Ribonucleotide Reductase, K. Yokoyama, Smith, A. A., Corzilius, B., Griffin, R. G., and Stubbe, J. A., , Journal of the American Chemical Society, vol. 133, pp. 18420–18432, 2011.
Formation of organic molecular nanocrystals under rigid confinement with analysis by solid state NMR, X. Yang, Ong, T. C., Michaelis, V. K., Heng, S., Huang, J., Griffin, R. G., and Myerson, A. S., , CrystEngComm, vol. 16, pp. 9345–9352, 2014.
Frequency-Swept Integrated and Stretched Solid Effect Dynamic Nuclear Polarization, T. V. Can, McKay, J. E., Weber, R. T., Yang, C., Dubroca, T., van Tol, J., Hill, S., and Griffin, R. G., , The Journal of Physical Chemistry Letters, pp. 3187 - 3192, 2018.
High-frequency dynamic nuclear polarization using biradicals: A multifrequency EPR lineshape analysis, K. - N. Hu, Song, C., Yu, H. -hua, Swager, T. M., and Griffin, R. G., , The Journal of Chemical Physics, vol. 128, p. 052302, 2008.
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.
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.
In-Situ Characterization of Pharmaceutical Formulations by Dynamic Nuclear Polarization Enhanced MAS NMR, Q. Zhe Ni, Yang, F., Can, T. V., Sergeyev, I. V., D’Addio, S. M., Jawla, S. K., Li, Y., Lipert, M. P., Xu, W., Williamson, R. Thomas, Leone, A., Griffin, R. G., and Su, Y., , The Journal of Physical Chemistry B, vol. 121, no. 34, pp. 8132-8141, 2017.
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.
Properties of dinitroxides for use in dynamic nuclear polarization (DNP), C. Ysacco, Rizzato, E., Virolleaud, M. - A., Karoui, H., Rockenbauer, A., Le Moigne, F., Siri, D., Ouari, O., Griffin, R. G., and Tordo, P., , Physical Chemistry Chemical Physics, vol. 12, p. 5841, 2010.
Structural characterization of the human membrane protein VDAC2 in lipid bilayers by MAS NMR, M. T. Eddy, Yu, T. - Y., Wagner, G., and Griffin, R. G., , Journal of Biomolecular NMR, vol. 73, pp. 451–460, 2019.
Tau induces formation of α-synuclein filaments with distinct molecular conformations, A. Hojjatian, Dasari, A. K. R., Sengupta, U., Taylor, D., Daneshparvar, N., Yeganeh, F. Abbasi, Dillard, L., Michael, B., Griffin, R. G., Borgnia, M. J., and al., et, , Biochemical and Biophysical Research Communications, vol. 554, pp. 145–150, 2021.
Three-spin solid effect and the spin diffusion barrier in amorphous solids, K. Ooi Tan, Mardini, M., Yang, C., Ardenkjær-Larsen, J. Henrik, and Griffin, R. G., , Science Advances, vol. 5, 2019.
Time domain DNP at 1.2 T, T. V. Can, Tan, K. O., Yang, C., Weber, R. T., and Griffin, R. G., , Journal of Magnetic Resonance, vol. 329, p. 107012, 2021.
Time-optimized pulsed dynamic nuclear polarization, K. Ooi Tan, Yang, C., Weber, R. T., Mathies, G., and Griffin, R. G., , Science Advances, vol. 5, p. eaav6909, 2019.