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83 Shi, W. and Chance, M.R. Metalloproteomics: forward and reverse approaches in
metalloprotein structural and functional characterization. Curr. Opin. Chem.
Biol. 2011, 15 , 144-148.
84 Anfinsen, C.B. Principles that govern the folding of protein chains. Science 1973,
181 , 223-230.
85 Antoniou, D. and Schwartz, S.D. Protein dynamics and enzymatic chemical barrier
passage. J. Phys. Chem. B 2011, 115 , 15147-15158.
86 Konermann, L., Tong, X., and Pan, Y. Protein structure and dynamics studied by
mass spectrometry: H/D exchange, hydroxyl radical labeling, and related
approaches. J. Mass Spectrom. 2008, 43 , 1021-1036.
87 Xu, G. and Chance, M.R. Hydroxyl radical-mediated modification of proteins as
probes for structural proteomics. Chem. Rev. 2007, 107 , 3514-3543.
88 Chung, H.S., McHale, K., Louis, J.M., and Eaton, W.A. Single-molecule fluores-
cence experiments determine protein folding transition path times. Science 2012,
335 , 981-984.
89 Konermann, L., Pan, J., and Liu, Y.H. Hydrogen exchange mass spectrometry for
studying protein structure and dynamics. Chem. Soc. Rev. 2011, 40 , 1224-1234.
90 Törnvall, U. Pinpointing oxidative modifications in proteins—recent advances in
analytical methods. Anal. Methods 2010, 2 , 1638-1650.
91 Engen, J.R. Analysis of protein conformation and dynamics by hydrogen/
deuterium exchange MS. Anal. Chem. 2009, 81 , 7870-7875.
92 Capelo, J.L., Carreira, R., Diniz, M., Fernandes, L., Galesio, M., Lodeiro, C.,
Santos, H.M., and Vale, G. Overview on modern approaches to speed up protein
identification workflows relying on enzymatic cleavage and mass spectrometry-
based techniques. Anal. Chim. Acta 2009, 650 , 151-159.
93 Roeser, J., Permentier, H.P., Bruins, A.P., and Bischoff, R. Electrochemical oxida-
tion and cleavage of tyrosine- and tryptophan-containing tripeptides. Anal. Chem.
2010, 82 , 7556-7565.
94 Pain, R.H. Mechanisms of Protein Folding . Oxford University Press, Oxford, UK,
2000.
95 Fersht, A.R. Structure and Mechanism in Protein Science . W.H. Freeman & Co.,
New York, 1999.
96 Schotte, F., Lim, M., Jackson, T.A., Smirnov, A.V., Soman, J., Olson, J.S., Phillips,
G.N., Jr., Wulff, M., and Anfinrud, P.A. Watching a protein as it functions with
150-ps time-resolved X-ray crystallography. Science 2003, 300 , 1944-1947.
97 Rhodes, G. Crystallography Made Crystal Clear . Academic Press, San Diego, CA,
2000.
98 Dempsey, A.C., Walsh, M.P., and Shaw, G.S. Unmasking the annexin I interaction
from the structure of apo-S100A11. Structure 2003, 11 , 887-897.
99 Mittermaier, A. and Kay, L.E. New tools provide new insights in NMR studies of
protein dynamics. Science 2006, 312 , 224-228.
100 Yi, S., Boys, B.L., Brickenden, A., Konermann, L., and Choy, W.Y. Effects of zinc
binding on the structure and dynamics of the intrinsically disordered protein
prothymosin α: evidence for metalation as an entropic switch. Biochemistry 2007,
46 , 13120-13130.
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