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首页> 外文期刊>Journal of Molecular Biology >X-RAY STRUCTURE ANALYSIS OF THE IRON-DEPENDENT SUPEROXIDE DISMUTASE FROM MYCOBACTERIUM TUBERCULOSIS AT 2.0 ANGSTROMS RESOLUTION REVEALS NOVEL DIMER-DIMER INTERACTIONS
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X-RAY STRUCTURE ANALYSIS OF THE IRON-DEPENDENT SUPEROXIDE DISMUTASE FROM MYCOBACTERIUM TUBERCULOSIS AT 2.0 ANGSTROMS RESOLUTION REVEALS NOVEL DIMER-DIMER INTERACTIONS

机译:结核分枝杆菌在2.0埃分辨率下铁依赖性超氧化物歧化的X射线结构分析揭示了新型二聚体与二聚体的相互作用

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The X-ray structure of the tetrameric iron-dependent superoxide dismutase from Mycobacterium tuberculosis has been refined to an R-factor of 0.167 and a correlation coefficient of 0.954 at 2.0 Angstrom resolution. The crystals are monoclinic P2(1) and have four subunits related by strong non-crystallographie 222 (or D-2) symmetry in the asymmetric unit. 198 of the 207 amino acids of each subunit are defined by the electron density which shows that they adopt the conserved fold of other iron- or manganese-dependent SODs. The structure can be divided into two domains, the N-terminal domain involving an extended region followed by two projecting antiparallel a-helices, and the C-terminal domain containing four more helical segments with a three-stranded antiparallel beta-sheet inserted sequentially between the fourth and fifth helices. The catalytic iron is co-ordinated by five ligands: three histidines (residues 28, 76 and 164), one aspartate (160) and a solvent molecule. The inferred positions of protons at the active site are consistent with the solvent ligand being a hydroxide ion. This ligand interacts with His145 in the Mycobacterium tuberculosis SOD. In the highly homologous Mycobacterium leprae Mn-SOD, the histidine is replaced by glutamine, this being the only significant residue difference within 10 Angstrom of the Fe3+. The nature of the amino acid at this position may influence the metal ion specificity of these enzymes. The subunits of the Mycobacterium tuberculosis SOD associate by polar contacts to form dimers, which closely resemble those of other dimeric or tetrameric Fe- or Mn-SODs. However, the dimer-dimer interactions within the tetramer are novel, being dominated by dimerisation of the 144 to 152 loop regions which connect the outer two beta-strands of the three-membered beta-sheet. This contrasts strongly with the other tetrameric Fe- or Mn-SODs where the dimer-dimer association is dominated by the projecting alpha alpha-turn in the N-terminal domain. [References: 30]
机译:结核分枝杆菌的四聚体铁依赖性超氧化物歧化酶的X射线结构在2.0埃分辨率下已精炼到0.167的R因子和0.954的相关系数。晶体是单斜晶P2(1),在不对称单元中具有通过强非晶体学222(或D-2)对称性关联的四个亚基。每个亚基的207个氨基酸中的198个由电子密度定义,这表明它们采用了其他依赖铁或锰的SOD的保守折叠。该结构可分为两个结构域,N末端结构域包含一个延伸区域,然后是两个突出的反平行α螺旋,C末端结构域包含四个以上的螺旋区段,并在其之间依次插入了三链反平行β折叠第四和第五个螺旋。催化铁由五个配体配位:三个组氨酸(残基28、76和164),一个天冬氨酸(160)和一个溶剂分子。质子在活性位点的推测位置与溶剂配体是氢氧离子一致。该配体与结核分枝杆菌SOD中的His145相互作用。在高度同源的麻风分枝杆菌Mn-SOD中,组氨酸被谷氨酰胺替代,这是Fe3 +在10埃内唯一的显着残基差异。该位置氨基酸的性质可能会影响这些酶的金属离子特异性。结核分枝杆菌SOD的亚基通过极性接触结合形成二聚体,该二聚体与其他二聚或四聚Fe-或Mn-SOD的二聚体极为相似。然而,四聚体中的二聚体-二聚体相互作用是新颖的,主要由连接三元β-折叠的外部两个β-链的144至152个环区的二聚化主导。这与其他四聚体Fe-或Mn-SOD形成鲜明对比,在其他四聚体Fe-或Mn-SOD中,二聚体-二聚体缔合主要由N端结构域中突出的α-α-角决定。 [参考:30]

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