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基于 3D-TROSY 的单体同源二聚体的骨架和 ILV-methyl 共振峰归属,来自于单个蛋白样本。

3D-TROSY-based backbone and ILV-methyl resonance assignments of a 319-residue homodimer from a single protein sample.

机构信息

Department of Chemistry and Biochemistry, University of Maryland, Biomolecular Sci. Bldg./CBSO, College Park, MD 20742, USA.

出版信息

J Biomol NMR. 2012 Oct;54(2):135-43. doi: 10.1007/s10858-012-9667-9. Epub 2012 Sep 8.

Abstract

The feasibility of practically complete backbone and ILV methyl chemical shift assignments from a single [U-(2)H,(15)N,(13)C; Ileδ1-{(13)CH(3)}; Leu,Val-{(13)CH(3)/(12)CD(3)}]-labeled protein sample of the truncated form of ligand-free Bst-Tyrosyl tRNA Synthetase (Bst-ΔYRS), a 319-residue predominantly helical homodimer, is established. Protonation of ILV residues at methyl positions does not appreciably detract from the quality of TROSY triple resonance data. The assignments are performed at 40 °C to improve the sensitivity of the measurements and alleviate the overlap of (1)H-(15)N correlations in the abundant α-helical segments of the protein. A number of auxiliary approaches are used to assist in the assignment process: (1) selection of (1)H-(15)N amide correlations of certain residue types (Ala, Thr/Ser) that simplifies 2D (1)H-(15)N TROSY spectra, (2) straightforward identification of ILV residue types from the methyl-detected 'out-and-back' HMCM(CG)CBCA experiment, and (3) strong sequential HN-HN NOE connectivities in the helical regions. The two subunits of Bst-YRS were predicted earlier to exist in two different conformations in the absence of ligands. In agreement with our earlier findings (Godoy-Ruiz in J Am Chem Soc 133:19578-195781, 2011), no evidence of dimer asymmetry has been observed in either amide- or methyl-detected experiments.

摘要

从单个 [U-(2)H,(15)N,(13)C;Ileδ1-{(13)CH(3)};Leu,Val-{(13)CH(3)/(12)CD(3)}]-标记的无配体 Bst-酪氨酰 tRNA 合成酶(Bst-ΔYRS)的截断形式的蛋白质样品中,实际上可以完全实现骨架和 ILV 甲基化学位移分配。ILV 残基在甲基位置的质子化不会显著降低 TROSY 三重共振数据的质量。分配在 40°C 下进行,以提高测量的灵敏度并减轻蛋白质丰富的 α-螺旋段中(1)H-(15)N 相关的重叠。使用了许多辅助方法来辅助分配过程:(1)选择某些残基类型(Ala、Thr/Ser)的(1)H-(15)N 酰胺相关,这简化了 2D(1)H-(15)N TROSY 谱,(2)从甲基检测到的“来回”HMCM(CG)CBCA 实验中直接识别 ILV 残基类型,以及(3)在螺旋区域中强的顺序 HN-HN NOE 连接性。Bst-YRS 的两个亚基以前被预测在没有配体的情况下存在两种不同的构象。与我们之前的发现一致(Godoy-Ruiz 在 J Am Chem Soc 133:19578-195781, 2011),在酰胺或甲基检测实验中均未观察到二聚体不对称的证据。

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