...
首页> 外文期刊>Biochemistry >Probing the role of the Fe-S subunit hinge region during Q(o) site catalysis in Rhodobacter capsulatus bc(1) complex
【24h】

Probing the role of the Fe-S subunit hinge region during Q(o) site catalysis in Rhodobacter capsulatus bc(1) complex

机译:探索在荚膜红细菌bc(1)复合物中Q(o)站点催化过程中Fe-S亚基铰链区的作用

获取原文
获取原文并翻译 | 示例
           

摘要

The ubihydroquinone:cytochrome c oxidoreductase, or bc(1) complex, functions according to a mechanism known as the modified Q cycle. Recent crystallographic data have revealed that the extrinsic domain containing the [2Fe2S] cluster of the Fe-S subunit of this enzyme occupies different positions in various crystal forms, suggesting that this subunit may move during ubihydroquinone oxidation. As in these structures the hydrophobic membrane anchor of the Fe-S subunit remains at the same position, the movement of the [2Fe2S] cluster domain would require conformational changes of the hinge region linking its membrane anchor to its extrinsic domain. To probe the role of the hinge region, Rhodobacter capsulatus bc(1) complex was used as a model, and various mutations altering the hinge region amino acid sequence, length, and flexibility were obtained. The effects of these modifications on the bc(1) complex function and assembly were investigated in detail. These studies demonstrated that the nature of the amino acid residues located in the hinge region (positions 43-49) of R. capsulatus Fe-S subunit was not essential per se for the function of the bc(1) complex. Mutants with a shorter hinge (up to five amino acid residues deletion) yielded functional bc(1) complexes, but contained substoichiometric amounts of the Fe-S subunit. Moreover, mutants with increased rigidity or flexibility of the hinge region altered both the function and the assembly or the steady-state stability of the bc(1) complex. In particular, the extrinsic domain of the Fe-S subunit of a mutant containing six proline residues in the hinge region was shown to be locked in a position similar to that seen in the presence of stigmatellin. Interestingly, the latter mutant readily overcomes this functional defect by accumulating an additional mutation which shortens the length of the hinge. These findings indicate that the hinge region of the Fe-S subunit of bacterial bc(1) complexes has a remarkable structural plasticity. [References: 31]
机译:泛氢醌:细胞色素c氧化还原酶或bc(1)络合物根据称为修饰Q循环的机制起作用。最近的晶体学数据表明,含有该酶Fe-S亚基的[2Fe2S]簇的外部结构域在各种晶体形式中占据不同的位置,这表明该亚基可能在泛氢醌氧化过程中移动。由于在这些结构中,Fe-S亚基的疏水膜锚固位保持在相同位置,[2Fe2S]簇结构域的运动将需要将其膜锚固与其外部域连接的铰链区的构象变化。为了探测铰链区的作用,以荚膜红球菌bc(1)复合物为模型,获得了改变铰链区氨基酸序列,长度和柔韧性的各种突变。这些修改对bc(1)复杂功能和汇编的影响进行了详细研究。这些研究表明,位于荚膜红球菌Fe-S亚基铰链区(第43-49位)的氨基酸残基的性质本身对于bc(1)复合物的功能不是必需的。具有较短铰链(最多删除五个氨基酸残基)的突变体产生功能性bc(1)复合物,但包含亚化学计量的Fe-S亚基。此外,具有增加的铰链区刚性或柔性的突变体会改变bc(1)复合物的功能和装配或稳态稳定性。特别地,显示在铰链区中含有六个脯氨酸残基的突变体的Fe-S亚基的外在结构域被锁定在与存在柱头蛋白的情况相似的位置。有趣的是,后一种突变体通过积累缩短铰链长度的附加突变而容易克服了这一功能缺陷。这些发现表明细菌bc(1)配合物的Fe-S亚基的铰链区具有显着的结构可塑性。 [参考:31]

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