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嗜热栖热菌HB8来源的锰超氧化物歧化酶在2.4埃分辨率下的结构

The structure of manganese superoxide dismutase from Thermus thermophilus HB8 at 2.4-A resolution.

作者信息

Stallings W C, Pattridge K A, Strong R K, Ludwig M L

出版信息

J Biol Chem. 1985 Dec 25;260(30):16424-32.

PMID:4066716
Abstract

An atomic model of tetrameric manganese superoxide dismutase from Thermus thermophilus HB8 has been built into an electron density map at 2.4 A resolution, using chemical sequences of Mn dismutases from Thermus aquaticus and Bacillus stearothermophilus. The monomer fold is structurally very similar to the fold of iron dismutase and comprises two domains, each contributing two ligands to the metal. The Mn(III) ion is bound by protein ligands assigned as His 28, His 83, Asp 165, and His 169. Near neighbors in the metal-ligand environment include a series of hydrophobic residues, Phe 86, Trp 87, Trp 131, and Trp 167. The hydroxyl groups of two Tyr residues, at 36 and 182, are less than 7 A from the metal, as is His 32. Gln 150 forms a bridge between Tyr 36 and Trp 131. These ligands and nearby residues are strongly conserved in the known sequences of Mn dismutases. Only one of the two oxygens of Asp 165 has been assigned as a metal ligand, so that in the current model four protein atoms bind Mn(III). These ligand atoms form part of an approximate trigonal bipyramid in which water may occupy an axial position on the side opposite His 28. The conformation of the protein is unusual in the vicinity of the first ligand, His 28, as a consequence of the insertion of an extra residue in an alpha-helix. The distortion of the helix allows His 32 to stack against the ligand, His 169, and brings Tyr 36 close to the Mn ion. Across one of the dimer interfaces, the two Mn ions are separated by about 18 A, and active center residues from adjoining subunits interdigitate; Tyr 172 interacts with His 32 of the neighboring chain and Glu 168 with the backbone of 168 and with the ligand His 169 from the opposite subunit. Only one other dimer interface occurs in the tetramer; it involves residues 55-62 and sequences near 140 and 156. The center of the oligomeric molecule is filled with solvent.

摘要

利用嗜热水栖热菌和嗜热脂肪芽孢杆菌锰超氧化物歧化酶的化学序列,已将嗜热栖热菌HB8四聚体锰超氧化物歧化酶的原子模型构建到分辨率为2.4埃的电子密度图中。单体折叠结构在结构上与铁超氧化物歧化酶的折叠非常相似,由两个结构域组成,每个结构域为金属提供两个配体。Mn(III)离子由被指定为His 28、His 83、Asp 165和His 169的蛋白质配体结合。金属-配体环境中的近邻包括一系列疏水残基,Phe 86、Trp 87、Trp 131和Trp 167。36位和182位的两个酪氨酸残基的羟基与金属的距离小于7埃,His 32也是如此。Gln 150在Tyr 36和Trp 131之间形成一个桥。这些配体和附近的残基在已知的锰超氧化物歧化酶序列中高度保守。Asp 165的两个氧原子中只有一个被指定为金属配体,因此在当前模型中四个蛋白质原子结合Mn(III)。这些配体原子形成一个近似三角双锥的一部分,其中水可能占据与His 28相对一侧的轴向位置。由于在α-螺旋中插入了一个额外的残基,蛋白质的构象在第一个配体His 28附近是不寻常的。螺旋的扭曲使His 32与配体His 169堆叠,并使Tyr 36靠近Mn离子。在一个二聚体界面上,两个Mn离子相距约18埃,相邻亚基的活性中心残基相互交错;Tyr 172与相邻链的His 32相互作用,Glu 168与168的主链以及来自相对亚基的配体His 169相互作用。四聚体中只出现另一个二聚体界面;它涉及残基55-62以及140和156附近的序列。寡聚分子的中心充满溶剂。

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