首页> 外文期刊>Journal of bacteriology >Copper-zinc superoxide dismutase of Caulobacter crescentus: cloning, sequencing, and mapping of the gene and periplasmic location of the enzyme.
【24h】

Copper-zinc superoxide dismutase of Caulobacter crescentus: cloning, sequencing, and mapping of the gene and periplasmic location of the enzyme.

机译:新月形铜细菌的铜-锌超氧化物歧化酶:基因的克隆,测序和作图以及酶的周质定位。

获取原文
           

摘要

Although widely found in the cytoplasm of eucaryotes, the copper-zinc form of superoxide dismutase (CuZnSOD) has been identified in only a small number of bacterial species. One species is the freshwater bacterium Caulobacter crescentus, which also contains an SOD with iron as the metal cofactor (FeSOD). To investigate the function of this CuZnSOD and its structural relationship to the eucaryotic CuZnSODs, the gene encoding CuZnSOD (sodC) of C. crescentus CB15 was cloned and sequenced. By hybridization to pulsed-field electrophoresis gels, sodC was mapped near cysE in the C. crescentus chromosome. Through analysis of spheroplasts, the two SODs of C. crescentus were shown to be differently localized, CuZnSOD in the periplasm and FeSOD in the cytoplasm. In its natural habitat, C. crescentus is frequently associated with blue-green algae (cyanobacteria). The oxygen evolved by these photosynthetic algae may create an extracellular oxidative stress against which the periplasmic CuZnSOD may defend more effectively than the cytoplasmic FeSOD. Amino acid sequence alignments of C. crescentus CuZnSOD with eucaryotic CuZnSODs and with CuZnSOD of Photobacterium leiognathi (the only other bacterium from which CuZnSOD has been isolated and sequenced) suggest similar supersecondary structures for bacterial and eucaryotic CuZnSODs but reveal four novel substitutions in C. crescentus CuZnSOD: a phenylalanine critical to intrasubunit hydrophobic bonding replaced by alanine, a histidine ligand of zinc replaced by aspartate, and substitutions of two other previously invariant residues that stabilize zinc or both copper and zinc. These amino acid substitutions in C. crescentus CuZnSOD may have implications for its catalysis and stability.
机译:尽管在真核生物的细胞质中广泛发现,但仅在少数细菌中发现了铜锌形式的超氧化物歧化酶(CuZnSOD)。一种物种是淡水细菌新月形杆菌,它也含有以铁为金属辅助因子(FeSOD)的SOD。为了研究这种CuZnSOD的功能及其与真核CuZnSODs的结构关系,克隆了C.crescentus CB15的编码CuZnSOD(sodC)的基因并进行了测序。通过与脉冲场电泳凝胶杂交,将sodC定位在C.crescentus染色体的cysE附近。通过原生质球的分析,C.crescentus的两个SOD的定位不同,周质中的CuZnSOD和细胞质中的FeSOD。在其自然栖息地中,C。crescentus通常与蓝绿藻(蓝藻)相关。这些光合藻类放出的氧气可能会产生细胞外氧化应激,周质CuZnSOD可能比细胞质FeSOD更有效地防御氧化。 C.crescentus CuZnSOD与真核CuZnSODs和leiognathi细菌(唯一从其分离并测序的其他细菌)的CuZnSOD的氨基酸序列比对表明细菌和真核CuZnSODs具有相似的超二级结构,但揭示了C.crescentus中的四个新取代。 CuZnSOD:对亚单位内疏水键至关重要的苯丙氨酸被丙氨酸取代,锌的组氨酸配体被天冬氨酸取代,并且取代了两个其他不变的残基以稳定锌或铜和锌。 C.crescentus CuZnSOD中的这些氨基酸取代可能对其催化和稳定性有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号