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Application of SAIL phenylalanine and tyrosine with alternative isotope-labeling patterns for protein structure determination

机译:SAIL苯丙氨酸和酪氨酸在同位素标记中的应用

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The extensive collection of NOE constraint data involving the aromatic ring signals is essential for accurate protein structure determination, although it is often hampered in practice by the pervasive signal overlapping and tight spin couplings for aromatic rings. We have prepared various types of stereo-array isotope labeled phenylalanines (epsilon- and zeta-SAIL Phe) and tyrosine (epsilon-SAIL Tyr) to overcome these problems (Torizawa et al. 2005), and proven that these SAIL amino acids provide dramatic spectral simplification and sensitivity enhancement for the aromatic ring NMR signals. In addition to these SAIL aromatic amino acids, we recently synthesized delta-SAIL Phe and delta-SAIL Tyr, which allow us to observe and assign delta-C-13/H-1 signals very efficiently. Each of the various types of SAIL Phe and SAIL Tyr yields well-resolved resonances for the delta-, epsilon- or zeta-C-13/H-1 signals, respectively, which can readily be assigned by simple and robust pulse sequences. Since the delta-, epsilon-, and zeta-proton signals of Phe/Tyr residues give rise to complementary NOE constraints, the concomitant use of various types of SAIL-Phe and SAIL-Tyr would generate more accurate protein structures, as compared to those obtained by using conventional uniformly C-13, N-15-double labeled proteins. We illustrated this with the case of an 18.2 kDa protein, Escherichia coli peptidyl-prolyl cis-trans isomerase b (EPPIb), and concluded that the combined use of zeta-SAIL Phe and epsilon-SAIL Tyr would be practically the best choice for protein structural determinations.
机译:尽管在实际操作中通常会因芳香环普遍存在的信号重叠和紧密自旋耦合而受到阻碍,但广泛收集涉及芳香环信号的NOE约束数据对于准确确定蛋白质结构至关重要。为了克服这些问题,我们准备了各种类型的立体阵列同位素标记的苯丙氨酸(ε-SAIL和zeta-SAIL Phe)和酪氨酸(ε-SAILTyr)来克服这些问题(Torizawa等人,2005年),并证明了这些SAIL氨基酸提供了引人注目的芳香环NMR信号的光谱简化和灵敏度增强。除了这些SAIL芳香族氨基酸外,我们最近还合成了delta-SAIL Phe和delta-SAIL Tyr,这使我们能够非常有效地观察和分配delta-C-13 / H-1信号。各种类型的SAIL Phe和SAIL Tyr分别对δ-,ε-或zeta-C-13 / H-1信号产生良好解析的共振,可以通过简单而可靠的脉冲序列轻松分配这些共振。由于Phe / Tyr残基的δ,ε和zeta质子信号引起互补的NOE约束,因此与之相比,同时使用各种类型的SAIL-Phe和SAIL-Tyr将产生更准确的蛋白质结构通过使用常规的均一的C-13,N-15-双标记蛋白获得。我们以18.2 kDa的蛋白质为例,说明了大肠杆菌肽基-脯氨酰顺反异构酶b(EPPIb),并得出结论,将zeta-SAIL Phe和epsilon-SAIL Tyr结合使用实际上是蛋白质的最佳选择结构确定。

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