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嗜热脂肪芽孢杆菌HU蛋白的溶液结构

Solution structure of the HU protein from Bacillus stearothermophilus.

作者信息

Vis H, Mariani M, Vorgias C E, Wilson K S, Kaptein R, Boelens R

机构信息

Bijvoet Center for Biomolecular Research Utrecht University, The Netherlands.

出版信息

J Mol Biol. 1995 Dec 8;254(4):692-703. doi: 10.1006/jmbi.1995.0648.

Abstract

The histone-like protein HU from Bacillus stearothermophilus is a dimer with a molecular mass of 19.5 kDa that is capable of bending DNA. An X-ray structure has been determined, but no structure could be established for a large part of the supposed DNA-binding beta-arms. Using distance and dihedral constraints derived from triple-resonance NMR data of a 13C/15N doubly-labelled HU protein 49 distance geometry structures were calculated, which were refined by means of restrained Molecular Dynamics. From this set a total of 25 refined structures were selected having low constraint energy and few constraint violations. The ensemble of 25 structures display a root-mea-square co-ordinate deviation of 0.36 A with respect to the average structure, calculated over the backbone heavy atoms of residues 2 to 54 and 75 to 90 (and residues 2' to 54' and 75' to 90' of the second monomer). The structure of the core is very similar to that observed in the X-ray structure, with a pairwise r.m.s.d. of 1.06 A. The structure of the beta-hairpin arm contains a double flip-over at the prolines in the two strands of the beta-arm. Strong 15N-NH heteronuclear nuclear Overhauser effects indicate that the beta-arm and especially the tip is flexible. This explains the disorder observed in the solution and X-ray structures of the beta-arm, in respect of the core of the protein. Overlayed onto itself the beta-arm is better defined, with an r.m.s.d. of 1.0 A calculated over the backbone heavy atoms of residues 54 to 59 and 69 to 74. The tip of the arm adopts a well-defined 4:6 beta-hairpin conformation similar to the iron co-ordinating beta-arms of rubredoxin.

摘要

嗜热脂肪芽孢杆菌的类组蛋白HU是一种分子量为19.5 kDa的二聚体,能够使DNA弯曲。其X射线结构已被确定,但对于假定的DNA结合β-臂的大部分区域,尚未建立起结构。利用13C/15N双标记HU蛋白的三共振NMR数据得出的距离和二面角约束,计算了49个距离几何结构,并通过受限分子动力学进行了优化。从这一组结构中,总共挑选出25个约束能量低且约束违反情况少的优化结构。这25个结构的集合相对于平均结构的均方根坐标偏差为0.36 Å,计算范围是残基2至54以及75至90(以及第二个单体的残基2'至54'和75'至90')的主链重原子。核心结构与X射线结构中观察到的非常相似,成对均方根偏差为1.06 Å。β-发夹臂的结构在β-臂两条链中的脯氨酸处包含一个双翻转。强烈的15N-NH异核核Overhauser效应表明β-臂尤其是其末端是灵活的。这就解释了在β-臂的溶液和X射线结构中相对于蛋白质核心所观察到的无序情况。β-臂自身叠加时定义更清晰,相对于残基54至59以及69至74的主链重原子计算得到的均方根偏差为1.0 Å。臂的末端采用一种定义明确的4:6 β-发夹构象,类似于铁氧化还原蛋白的铁配位β-臂。

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