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来自大肠杆菌的周质细胞色素c亚硝酸还原酶的结构与光谱学

Structure and spectroscopy of the periplasmic cytochrome c nitrite reductase from Escherichia coli.

作者信息

Bamford Vicki A, Angove Hayley C, Seward Harriet E, Thomson Andrew J, Cole Jeffrey A, Butt Julea N, Hemmings Andrew M, Richardson David J

机构信息

Centre for Metalloprotein Spectroscopy and Biology, School of Biological Sciences, University of East Anglia, Norwich, NR4 7TJ, United Kingdom.

出版信息

Biochemistry. 2002 Mar 5;41(9):2921-31. doi: 10.1021/bi015765d.

Abstract

The crystal structure and spectroscopic properties of the periplasmic penta-heme cytochrome c nitrite reductase (NrfA) of Escherichia coli are presented. The structure is the first for a member of the NrfA subgroup that utilize a soluble penta-heme cytochrome, NrfB, as a redox partner. Comparison to the structures of Wolinella succinogenes NrfA and Sulfospirillum deleyianum NrfA, which accept electrons from a membrane-anchored tetra-heme cytochrome (NrfH), reveals notable differences in the protein surface around heme 2, which may be the docking site for the redox partner. The structure shows that four of the NrfA hemes (hemes 2-5) have bis-histidine axial heme-Fe ligation. The catalytic heme-Fe (heme 1) has a lysine distal ligand and an oxygen atom proximal ligand. Analysis of NrfA in solution by magnetic circular dichroism (MCD) suggested that the oxygen ligand arose from water. Electron paramagnetic resonance (EPR) spectra were collected from electrochemically poised NrfA samples. Broad perpendicular mode signals at g similar 10.8 and 3.5, characteristic of weakly spin-coupled S = 5/2, S = 1/2 paramagnets, titrated with E(m) = -107 mV. A possible origin for these are the active site Lys-OH(2) coordinated heme (heme 1) and a nearby bis-His coordinated heme (heme 3). A rhombic heme Fe(III) EPR signal at g(z) = 2.91, g(y) = 2.3, g(x) = 1.5 titrated with E(m) = -37 mV and is likely to arise from bis-His coordinated heme (heme 2) in which the interplanar angle of the imidazole rings is 21.2. The final two bis-His coordinated hemes (hemes 4 and 5) have imidazole interplanar angles of 64.4 and 71.8. Either, or both, of these hemes could give rise to a "Large g max" EPR signal at g(z)() = 3.17 that titrated at potentials between -250 and -400 mV. Previous spectroscopic studies on NrfA from a number of bacterial species are considered in the light of the structure-based spectro-potentiometric analysis presented for the E. coli NrfA.

摘要

本文介绍了大肠杆菌周质五聚体血红素细胞色素c亚硝酸还原酶(NrfA)的晶体结构和光谱性质。该结构是利用可溶性五聚体血红素细胞色素NrfB作为氧化还原伙伴的NrfA亚组成员中的首个结构。与接受来自膜锚定四聚体血红素细胞色素(NrfH)电子的琥珀酸沃林氏菌NrfA和德莱氏硫化螺旋菌NrfA的结构相比,发现血红素2周围的蛋白质表面存在显著差异,该区域可能是氧化还原伙伴的对接位点。结构显示,NrfA的四个血红素(血红素2 - 5)具有双组氨酸轴向血红素 - 铁配体。催化血红素 - 铁(血红素1)具有赖氨酸远端配体和氧原子近端配体。通过磁圆二色性(MCD)对溶液中的NrfA进行分析表明,氧配体来自水。从电化学平衡的NrfA样品中收集电子顺磁共振(EPR)光谱。在g约为10.8和3.5处有宽的垂直模式信号,这是弱自旋耦合的S = 5/2,S = 1/2顺磁体的特征,其滴定电位为E(m)= -107 mV。这些信号的一个可能来源是活性位点赖氨酸 - OH(2)配位的血红素(血红素1)和附近的双组氨酸配位的血红素(血红素3)。在g(z)= 2.91,g(y)= 2.3,g(x)= 1.5处的菱形血红素Fe(III) EPR信号滴定电位为E(m)= -37 mV,可能来自双组氨酸配位的血红素(血红素2),其中咪唑环的平面间角度为21.2。最后两个双组氨酸配位的血红素(血红素4和5)的咪唑平面间角度分别为64.4和71.8。这些血红素中的一个或两个可能在g(z)() = 3.17处产生“大g max”EPR信号,其滴定电位在 - 250至 - 400 mV之间。根据对大肠杆菌NrfA进行的基于结构的光谱电位分析,考虑了先前对多种细菌物种的NrfA进行的光谱研究。

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