Chemistry Reference
In-Depth Information
106. Schneider R, Ader C, Lange A et al (2008) Solid-state NMR spectroscopy applied to a
chimeric potassium channel in lipid bilayers. J Am Chem Soc 130:7427-7435
107. Hong M, Jakes K (1999) Selective and extensive C-13 labeling of a membrane protein for
solid-state NMR investigations. J Biomol NMR 14:71-74
108. Igumenova TI, McDermott AE, Zilm KW et al (2004) Assignments of carbon NMR
resonances for microcrystalline ubiquitin. J Am Chem Soc 126:6720-6727
109. Franks WT, Zhou DH, Wylie BJ et al (2005) Magic-angle spinning solid-state NMR
spectroscopy of the
1 immunoglobulin binding domain of protein G (GB1): 15 N and 13 C
chemical shift assignments and conformational analysis. J Am Chem Soc 127:12291-12305
110. Heise H, Seidel K, Etzkorn M et al (2005) 3D NMR spectroscopy for resonance assignment
and structure elucidation of proteins under MAS: novel pulse schemes and sensitivity
considerations. J Magn Reson 173:64-74
111. Franks W, Kloepper K, Wylie B et al (2007) Four-dimensional heteronuclear correlation
experiments for chemical shift assignment of solid proteins. J Biomol NMR 39:107-131
112. Huang L, McDermott AE (2008) Partial site-specific assignment of a uniformly C-13, N-15
enriched membrane protein, light-harvesting complex 1 (LH1), by solid state NMR. Biochim
Biophys Acta 1777:1098-1108
113. Li Y, Berthold DA, Gennis RB et al (2008) Chemical shift assignment of the transmembrane
helices of DsbB, a 20-kDa integral membrane enzyme, by 3D magic-angle spinning NMR
spectroscopy. Protein Sci 17:199-204
114. Shi L, Traaseth NJ, Verardi R et al (2009) A refinement protocol to determine structure,
topology, and depth of insertion of membrane proteins using hybrid solution and solid-state
NMR restraints. J Biomol NMR 44:195-205
115. Morcombe CR, Gaponenko V, Byrd RA et al (2005) 13C CPMAS spectroscopy of deuterated
proteins: CP dynamics, line shapes, and T1 relaxation. J Am Chem Soc 127:397-404
116. Lesage A, Emsley L, Penin F et al (2006) Investigation of dipolar-mediated water-protein
interactions in microcrystalline Crh by solid-state NMR spectroscopy. J Am Chem Soc
128:8246-8255
117. Akbey U, Lange S, Trent Franks W et al (2010) Optimum levels of exchangeable protons in
perdeuterated proteins for proton detection in MAS solid-state NMR spectroscopy. J Biomol
NMR 46:67-73
118. Zhou Donghua H, Shea John J, Nieuwkoop Andrew J et al (2007) Solid-state protein-
structure determination with proton-detected triple-resonance 3D magic-angle-spinning
NMR spectroscopy. Angew Chem Int Ed 46:8380-8383
119. Varga K, Ashmovska L, Parrot I et al (2007) NMR crystallography: the effect of deuteration
on high resolution C-13 solid state NMR spectra of a 7-TM protein. Biochim Biophys Acta
1768:3029-3035
120. Tapaneeyakorn S, Goddard AD, Oates J et al (2011) Solution- and solid-state NMR studies of
GPCRs and their ligands. Biochim Biophys Acta 1808:1462-1475
121. Cross TA, Sharma M, Yi M et al (2011) Influence of solubilizing environments on membrane
protein structures. Trends Biochem Sci 36:117-125
122. Pauli J, van Rossum B, Forster H et al (2000) Sample optimization and identification of signal
patterns of amino acid side chains in 2D RFDR spectra of the alpha-spectrin SH3 domain.
J Magn Reson 143:411-416
123. Igumenova TI, Wand AJ, McDermott AE (2004) Assignment of the backbone resonances for
microcrystalline ubiquitin. J Am Chem Soc 126:5323-5331
124. Kijac AZ, Li Y, Sligar SG et al (2007) Magic-angle spinning solid-state NMR spectroscopy
of nanodisc-embedded human CYP3A4. Biochemistry (Mosc) 46:13696-13703
125. Lange A, Luca S, Baldus M (2002) Structural constraints from proton-mediated rare-spin
correlation spectroscopy in rotating solids. J Am Chem Soc 124:9704-9705
126. Lange A, Becker S, Seidel K et al (2005) A concept for rapid protein-structure determination
by solid-state NMR spectroscopy. Angew Chem Int Ed 44:2089-2092
b
Search WWH ::




Custom Search