Hong M, Jakes K
Department of Polymer Science & Engineering, University of Massachusetts, Amherst 01003, USA.
J Biomol NMR. 1999 May;14(1):71-4. doi: 10.1023/a:1008334930603.
The selective and extensive 13C labeling of mostly hydrophobic amino acid residues in a 25 kDa membrane protein, the colicin Ia channel domain, is reported. The novel 13C 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 structural constraints. We show the assignment of most 13C resonances to specific amino acid types based on the characteristic chemical shifts, the 13C labeling pattern, and the amino acid composition of the protein. The assignment is partly confirmed by a 2D homonuclear double-quantum-filter experiment under magic-angle spinning. The high sensitivity and spectral resolution attained with this 13C-labeling protocol, which is termed TEASE for ten-amino acid selective and extensive labeling, are demonstrated.
报道了在一种25 kDa的膜蛋白——大肠杆菌素Ia通道结构域中,对大多数疏水氨基酸残基进行选择性和广泛的13C标记。这种新型的13C标记方法利用了细菌中的氨基酸生物合成途径,并抑制了柠檬酸循环氨基酸产物的合成。标记的选择性和广泛性显著简化了固态核磁共振谱,减少了谱线展宽,并应允许同时测量多个结构约束。我们基于特征化学位移、13C标记模式和蛋白质的氨基酸组成,将大多数13C共振峰归属到特定的氨基酸类型。通过魔角旋转下的二维同核双量子滤波实验部分证实了该归属。展示了用这种称为TEASE(十种氨基酸选择性和广泛标记)的13C标记方案所获得的高灵敏度和光谱分辨率。