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噬菌体434 Cro蛋白的三维溶液结构与稳定性

Three-dimensional solution structure and stability of phage 434 Cro protein.

作者信息

Padmanabhan S, Jiménez M A, Gonzalez C, Sanz J M, Giménez-Gallego G, Rico M

机构信息

Instituto de Estructura de la Materia, Consejo Superior de Investigaciones Cientificas, Madrid, Spain.

出版信息

Biochemistry. 1997 May 27;36(21):6424-36. doi: 10.1021/bi970085p.

DOI:10.1021/bi970085p
PMID:9174359
Abstract

1H NMR resonances of the phage 434 Cro protein were assigned using standard 2D NMR methods, and its solution structure determined using 867 distance constraints in distance geometry (DIANA) calculations ultimately refined by restrained molecular dynamics (GROMOS). In the 20 best NMR structures, the average pairwise backbone and heavy atom RMSDs are 0.63 +/- 0.14 and 1.53 +/- 0.15 A, respectively, for the structurally well-defined residues 4-65. Residues 1-3 and 66-71 at the N- and C-termini are structurally disordered. The region 4-65 includes five alpha-helices and tight turns which define the hydrophobic core of the protein. The backbone and heavy atom RMSDs for residues 4-65 are 0.92 +/- 0.12 and 1.99 +/- 0.12 A, respectively, for the NMR versus the crystal structures, but there are significant differences in the side-chain conformations and solvent accessibilities for some core residues. Analytical ultracentrifugation experiments confirm that 434 Cro is monomeric even at the high NMR concentrations. 434 Cro folding under NMR solution conditions is two-state as indicated by coincident urea denaturation curves from circular dichroism and intrinsic fluorescence measurements. They yield values for 434 Cro stability which show good correspondence to the free energy for global unfolding determined by NMR hydrogen exchange measurements for the slowest exchanging amide protons.

摘要

利用标准二维核磁共振方法对噬菌体434 Cro蛋白的¹H NMR共振峰进行了归属,并通过距离几何(DIANA)计算中的867个距离约束确定其溶液结构,最终通过受限分子动力学(GROMOS)进行优化。在20个最佳NMR结构中,对于结构明确的4至65位残基,平均成对主链和重原子的均方根偏差(RMSD)分别为0.63±0.14 Å和1.53±0.15 Å。N端和C端的1至3位残基和66至71位残基在结构上是无序的。4至65位区域包含五个α螺旋和紧密转角,它们定义了该蛋白的疏水核心。对于4至65位残基,NMR结构与晶体结构相比,主链和重原子的RMSD分别为0.92±0.12 Å和1.99±0.12 Å,但某些核心残基的侧链构象和溶剂可及性存在显著差异。分析型超速离心实验证实,即使在高NMR浓度下,434 Cro也是单体。圆二色性和内源荧光测量得到的尿素变性曲线一致,表明434 Cro在NMR溶液条件下的折叠是两态的。它们得出的434 Cro稳定性值与通过最慢交换酰胺质子的NMR氢交换测量确定的全局解折叠自由能显示出良好的对应关系。

相似文献

1
Three-dimensional solution structure and stability of phage 434 Cro protein.噬菌体434 Cro蛋白的三维溶液结构与稳定性
Biochemistry. 1997 May 27;36(21):6424-36. doi: 10.1021/bi970085p.
2
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[Spatial structure of cro-repressor in a solution. II. Effect of ionized groups].
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Determination of the structure of oxidised Desulfovibrio africanus ferredoxin I by 1H NMR spectroscopy and comparison of its solution structure with its crystal structure.通过核磁共振氢谱法测定氧化型非洲脱硫弧菌铁氧化还原蛋白I的结构,并将其溶液结构与其晶体结构进行比较。
J Mol Biol. 1998 Apr 3;277(3):683-706. doi: 10.1006/jmbi.1998.1631.

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