M. Hong et K. Jakes, Selective and extensive C-13 labeling of a membrane protein for solid-state NMR investigations, J BIOM NMR, 14(1), 1999, pp. 71-74
The selective and extensive C-13 labeling of mostly hydrophobic amino acid
residues in a 25 kDa membrane protein, the colicin Ia channel domain, is re
ported. The novel C-13 labeling approach takes advantage of the amino acid
biosynthetic pathways in bacteria and suppresses the synthesis of the amino
acid products of the citric acid cycle. The selectivity and extensiveness
of labeling significantly simplify the solid-state NMR spectra, reduce line
broadening, and should permit the simultaneous measurement of multiple str
uctural constraints. We show the assignment of most C-13 resonances to spec
ific amino acid types based on the characteristic chemical shifts, the C-13
labeling pattern, and the amino acid composition of the protein. The assig
nment is partly confirmed by a 2D homonuclear double-quantum-filter experim
ent under magic-angle spinning. The high sensitivity and spectral resolutio
n attained with this C-13-labeling protocol, which is termed TEASE for ten-
amino acid selective and extensive labeling, are demonstrated.